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Génétique de l'hyperplasie macronodulaire des surrénales : identification et caractérisation du gène ARMC5 / Genetic of primary bilateral macronodular adrenal hyperplasia : identification and characterization of ARMC5 geneEspiard, Stéphanie 03 November 2016 (has links)
L’hyperplasie bilatérale macronodulaire des surrénales (HBMS) conduit au développement de nodules corticosurrénaliens bilatéraux entraînant un syndrome de Cushing diagnostiqué souvent au cours de la cinquième décennie. L’étiologie de cette maladie n’était que partiellement connue mais le caractère bilatéral de l’atteinte surrénalienne et l’observation de cas familiaux suggéraient, au début de ce travail, une origine génétique. L’analyse de l’ADN tumoral et leucocytaire d’une série de 33 patients opérés a permis de mettre en évidence chez 25% des patients une perte d’hétérozygotie neutre en nombres de copies (LOH) de tout le bras court du chromosome 16 (16p) au niveau du tissu surrénalien. Un séquençage complet du génome de 5 patients (ADN germinal et tumoral) a permis de mettre en évidence une mutation du gène ARMC5 localisé en 16p pour 4 patients. Le séquençage direct des parties codantes d’ARMC5 à partir de l’ADN somatique et germinal de l’ensemble des patients opérés de la cohorte a montré qu’au total, 55% des patients avaient une mutation d’ARMC5. L’inactivation du gène se fait selon la théorie de Knudson (un événement germinal inactivant le premier allèle associé à un autre événement somatique inactivant le second allèle) ce qui laisse supposer qu’ARMC5 est un gène suppresseur de tumeur. L’analyse de la cohorte d’HBMS de nos collaborateurs américains au National Institute Health (laboratoire de CA. Stratakis, Bethesda, USA) a permis de confirmer que les mutations d’ARMC5 étaient un événement fréquent. Des variants de ce gène sont aussi associés à l’hypertension à rénine basse chez les patients noirs-américains. Afin de déterminer des corrélations génotype-phénotype, notre cohorte initiale a été élargie pour constituer une série consécutive de 98 cas index de patients présentant des formes légères à sévères de la maladie, opérées ou non. Vingt-quatre patients (25%) présentaient une altération d’ARMC5. Par ailleurs, 31 nodules surrénaliens de 19 patients ont été analysés en somatique. Le second événement était une mutation dans 68% des cas et une LOH du locus pour les 32% restant. Chez un même patient, le second événement était différent dans chaque nodule présenté. Les patients mutés avaient un syndrome de Cushing plus sévère cliniquement et biologiquement par rapport aux patients non mutés. La taille de leurs surrénales étaient plus grandes avec un plus grand nombre de nodules. Les patients mutés étaient aussi plus jeunes au diagnostic et plus souvent hypertendus. Ces patients étaient ainsi plus souvent opérés. La fonction de la protéine ARMC5 n’était pas connue lors de son identification comme gène de l’HBMS. In vitro, la surexpression du gène sauvage induit l’apoptose. La surexpression des mutants faux-sens et du mutant p.F700del retrouvés chez les patients entraîne moins d’apoptose qu’ARMC5 sauvage. La protéine ARMC5 contient des domaines Armadillo et BTB, connus pour être impliqués dans l’interaction protéine-protéine. En physiologie, l’ACTH stimule la production d’AMPc et la voie de la protéine kinase A (PKA) est impliquée dans différentes pathologies corticosurrénaliennes. Nous avons pu montrer qu’ARMC5 interagissait avec la sous-unité catalytique alpha de la PKA. L’invalidation d’ARMC5 conduit in vitro à une diminution de l’expression d’enzymes de la stéroïdogénèse, de la production de cortisol et une diminution de l’activité PKA. Ainsi, l’hypothèse pour expliquer les HBMS liées à une inactivation d’ARMC5 est que la perte d’apoptose conduit à une hyperplasie nodulaire du tissu corticosurrénalien et que, même si la production de cortisol est diminuée à l’échelle unicellulaire, l’effet de masse global conduit au total à un hypercortisolisme. Nos travaux ont donc identifié et caractérisé un premier gène causal, ARMC5, fréquemment impliqué dans l’HBMS et associé à des formes plus sévères de la maladie. Cette découverte ouvre des perspectives pour le diagnostic familial et la prise en charge des patients. (...) / Primary bilateral macronodular adrenal hyperplasia (PBMAH) is a rare cause of adrenal Cushing’s syndrome and bilateral adrenal tumors. We suspected a genetic origin of the disease on the basis of the report of some familial cases and the involvement of both adrenal glands. The aim of this study was to find a genetic cause of non syndromic PBMAH. To look at chromosomal abnormalities, we use single-nucleotide polymorphism (SNP) arrays and microsatellite markers analysis in a first series of 33 patients all operated for PBMAH. We realize whole genome sequencing of 5 patients (blood and tumor DNAs matched). Then we genotyped by Sanger sequencing the gene Armadillo Repeat Containing 5 (ARMC5) in this first series and 66 additional patients. Clinical data were collected to establish genotype-phenotype correlation. In addition, the cohort of patients of our collaborators at the National Institute Health (Dr. Stratakis, Bethesda, USA) was studied. The effects of ARMC5 inactivation and overexpression and the partners of the protein were sought in cell-culture models. The most frequent somatic alteration was a loss of heterozygosity at 16p observed in tumors of 25% of the patients. The gene ARMC5, located at 16p11.2, was the most frequently mutated by whole genome sequencing: a mutation was found in 4/5 patients. 55% of the patients of the first cohort (33 patients treated by adrenalectomy for PBMAH) had ARMC5 alteration. One patient presented with germline microdeletion of the locus identified by SNP array. Every patient had two events: either a mutation or a deletion at the germline level, either a second mutation or a LOH at the somatic level. We showed that the two events were present on different alleles suggesting that ARMC5 is a tumor suppressor gene. In addition, we showed for several patients that the second hit was different in each adrenal nodules of a same patient. This first cohort included only operated patients with serious forms of the disease. The study of the American cohort and the analysis of the total cohort of our lab including non-operated patients and milder forms showed an alteration of ARMC5 in about 25% of the patients. Genotype-phenotype correlation showed that ARMC5 defects are associated with younger age at the diagnosis, higher hypercortisolism, bigger adrenals and higher number of nodules. In addition, a mutation of ARMC5 was shown in a patient with a PBMAH secreting both aldosterone and cortisol. Analysis of a series of patient affected by primary hyperaldosteronism suggested that ARMC5 may be associated with hypertension especially in African-American subjet. Overexpression of ARMC5 leads in vitro to cell apoptosis. We showed that this apoptosis was reduced when transfecting vector harboring missense mutations or single amino-acid deletion found in our cohort. Invalidation of ARMC5 leads to a decreased steroidogenic enzymes expression, cortisol production and reduced protein kinase A (PKA) activity. We showed that ARMC5 interacts with the calaytic subunit alpha of the PKA dissociated from the cAMP-bound regulatory subunits. More than one quarter of sporadic PBMAH patients present a pathogenic germline ARMC5 defect and these index cases present a more severe disease. Systematic genotyping of ARMC5 may help for early diagnosis of PBMAH, familial counseling, and patients’ management. ARMC5 appears to be a new regulator of PKA and might represent a new target for the development of pharmacological agents controlling PKA function and cortisol production.
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Nachweis Proteinkinase C abhängig exprimierter Gene in AstrozytomenSchulz, Timm 19 September 2003 (has links)
Die Proteinkinase C (PKC) ist eine wichtige Signaltransduktionskomponente, deren Aktivierung die Expression zahlreicher Gene induziert und zur Zelldifferenzierung und Zellproliferation führt. Ein besonders hohes Expressionsniveau der PKC findet man in vielen Tumoren. So korreliert in malignen Gliazellen das Expressionsniveau der PKC mit deren Wachstumsgeschwindigkeit. Es wird angenommen, daß die aktivierte PKC eine wichtige Rolle in der Tumorpromotion hat. In der vorliegenden Arbeit wurde untersucht, ob in Astrozytomzellinien Gene zu finden sind, die nach PKC-Aktivierung durch den Phorbol-Ester TPA differentiell exprimiert werden. Zunächst wurden kultivierte Zellen der Astrozytomzellinie LN-405 mit TPA respektive dem PKC-Inhibitor Chelerythrin behandelt. Nach Gewinnung der mRNA aus der zuvor isolierten RNA wurden in einem mehrstufigem PCR-Verfahren (SSH) cDNA-Abschnitte gewonnen, die zu vermeintlich differentiell exprimierten Genen gehören. Diese cDNA-Abschnitte wurden in Plasmid-Vektoren eingefügt, kloniert und zur Bestimmung sequenziert. Um falsch positive Sequenzen zu erkennen, wurden die zuvor radioaktiv markierten cDNA-Abschnitte mit Northernblots hybridisiert. Gleichzeitig ließ sich so ein zeitabhängiger Anstieg der Expression nach PKC-Stimulation untersuchen. Durch den PCR-Select-Assay (SSH) konnten insgesamt 11 Gene gefunden werden, die sich in der radioaktiven Northernblot-Hybridisierung, als nach PKC-Aktivierung differentiell exprimiert, darstellen ließen. Dabei bestätigt der gefundene Zusammenhang zwischen PKC-Aktivierung und differentieller Exprimierung bei fünf der 11 Gene (IL-8, Calpain, Interferon-gamma Rezeptor 2, Methionin Adenosyltransferase, beta-2 adrenerger Rezeptor) Ergebnisse anderer Autoren, wobei dieser Zusammenhang nur bei zwei Genen (IL-8 und Calpain) auch in Astrozytom- bzw. Gliom-Zellen schon früher gezeigt werden konnte. Sechs Gene (M-Phase Phosphoprotein-1, ect2-Onkogen, ERM-Gen, Ornithin-Decarboxylase-Antizym 2, MHC-bindendes Protein 2, Sequenz aus Cosmid F0811) wurden in der vorliegenden Arbeit erstmalig als PKC-abhängig exprimiert beschrieben. Die gefundenen Gene haben auf verschiedene Funktionen der Zellen Einfluß. So beeinflussen sie die Regulation des Zellzyklus (MPP1, ect2-Oncogen), die Immunregulation (MBP-2, IL-8, Interferon-gamma Rezeptor 2), die Signaltransduktion (beta-2 AR), die Transkription (ERM-Gen), die Proteinsynthese (ODC-Antizym, MAT), die Wachstumskontrolle (ODC-Antizym) und die Regulation der PKC selbst (Calpain). Für fünf Gene läßt sich ein eindeutiger Zusammenhang mit der Tumorpromotion herstellen: IL-8 (Angioneogenese), MBP-2 (Immunsuppression), ERM-Gen (Transkriptionspromotion), MAT (allgemein fördernder Einfluß auf den Metabolismus) und ect2-Oncogen (Oncogen). / The protein kinase C (PKC) is one of the major signal transduction systems and its activation leads to the induction of the expression of several genes, to cell differentiation and cell proliferation. Very high expressed PKC are found in many tumors. In malignant glia cells the expression of PKC correlates with their proliferation rate. The PKC activity has an important role for the tumor promotion. The object of this paper, was to investigated, if there are genes differentialy expressed after activation of PKC through the phorbol-ester TPA in astrocytoma cell lines. The astrocytoma cell line LN-405 was incubated with TPA and the PKC-inhibitor chelerythrine respectively. After isolation of RNA and mRNA the suppression subtractive hybridization (SSH) was used to isolate differentially expressed cDNA fragments. These cDNA fragments were inserted into the T/A cloning vector, cloned and sequenced. To detect false positives the cDNA fragments were analysed with northern blot technique. Examined was also a time-dependent acceleration of expression after TPA treatment. 11 genes were detected by suppression subtractive hybridization, showing differentially expressed in the northern blot hybridization. Five of the genes were found differentially expressed after PKC activation before (IL-8, calpain, interferon gamma receptor 2, beta-2-adrenergic receptor, methionine adenosyltransferase alpha), two of these genes (IL-8, calpain) also in astrocytoma- and glioma-cells respectively. Six genes (M-phase phosphoprotein 1, ect2-onkogene, erm gene, ornithine decarboxylase antizyme 2, MHC binding protein 2, sequence from Cosmid F0811) were described as PKC dependent expressed for the first time. The genes detected influence several cell functions. They are involved in cell-cycle regulation (MPP1, ect2-oncogene), immuneregulation (MBP-2, IL-8, interferon gamma receptor 2), signal transduction (beta 2 adrenergic receptor), transcription (erm-gene), synthesis of proteins (ODC-antizyme 2, MAT), growth control (ODC-antizyme) and regulation of PKC (Calpain). Five genes show a clear connection to tumor promotion: IL-8 (angioneogenesis), MPB-2 (immunesuppression), erm gene (promotion of transcription), MAT (promotion of metabolism) and ect2-oncogene (oncogene).
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Regulierung und Verfügbarkeit von Apolipoprotein E in AstrozytenHamker, Ulrike 24 May 2005 (has links)
Apolipoprotein E (ApoE) ist eine verbreitet vorkommende Komponente der Plasmalipoproteine und spielt eine Schlüsselrolle bei Lipidtransport und Cholesterin-Homöostase über den Low Density Lipoprotein Rezeptor. Im ZNS wird ApoE hauptsächlich von Astrozyten synthetisiert und sekretiert. ApoE-Isoformen haben unterschiedliche Wirkung auf eine Zahl von pathologischen Prozessen, die der Alzheimerschen Krankheit zugrunde liegen. Um die Rolle des ApoE für die Alzheimersche Krankheit zu erhellen, ist es wichtig Kenntnisse über seine Regulation zu erlangen. Ein Ziel dieser Arbeit war zu untersuchen, ob die „Second-Messenger“-Signalpfade „Adenylatcyclase/Proteinkinase A (PKA)“ und/oder „Phospholipase C/Proteinkinase C (PLC/PKC)“ in die Regulation der astrozytären ApoE Sekretion eingreifen. Hierfür wurden primäre hippocampale Astrozytenkulturen von Ratten mit verschiedenen Analoga, Rezeptoragonisten und Neurotransmittern, die diese Signalpfade beeinflussen, inkubiert. Dibutyryl-cAMP (cAMP-Analogon) erhöhte die ApoE Sekretion. Auch Rezeptoragonisten des Adenylatcyclase/PKA-Signalwegs beeinflussten die ApoE Sekretion. Isoproterenol (beta-Adrenorezeptoragonist) erhöhte die ApoE Sekretion, während Clonidine (alpha-2 Adrenorezeptoragonist) sie senkte. Der PKC-Aktivator Phorbol 12-Myristat 13-Acetat senkte die ApoE Sekretion und kehrte die dibutyryl-cAMP-vermittelte Erhöhung der ApoE Sekretion um. Arterenol (alpha-1 Adrenorezeptoragonist) und Serotonin (Neurotransmitter) erhöhten die ApoE Sekretion, wohingegen Carbachol (Acetylcholiner muskarinischer Rezeptoragonist) die ApoE Sekretion senkte. Es wird gezeigt, dass die verwendeten Substanzen einen von der ApoE Sekretion verschiedenen Einfluss auf die Sekretion des Nervenwachstumsfaktors (NGF) haben. Dies legt die Vermutung nahe, dass die beobachteten Ergebnisse nicht auf einen generellen Effekt der Proteinsynthese zurückzuführen sind. Es kann gefolgert werden, dass die astrozytäre ApoE Sekretion von Faktoren beeinflusst werden kann, die die intrazelluläre Konzentration von cAMP verändern oder die PKC aktivieren. Das zweite Ziel der Arbeit war zu untersuchen ob Amyloid Fragmente einen Einfluss auf die astrozytäre ApoE Sekretion haben. Senile Amyloid-Plaques in Alzheimer-Gehirnen zeigen eine ApoE-Immunreaktivität, Astrozyten die diese Plaques umgeben dagegen nicht. Es wird gezeigt, dass gealtertes fibrilläres Amyloid (1-40) die ApoE Sekretion erhöht. Das sekretierte ApoE wird durch die, die Zellen umgebenden Amyloid-Konglomerate, gebunden. Die verwendeten Amyloid Fragmente beeinflussten nicht die Menge des sekretierten basischen Fibroblastenwachstumsfaktors. Dies legt nahe, dass die beobachteten Ergebnisse nicht auf einen generellen Effekt der Proteinsynthese zurückzuführen sind. / Apolipoprotein E (apoE) is an abundant component of plasma lipoproteins that plays a key role in lipid transport and cholesterol homeostasis via the low density lipoprotein receptor. In the CNS, apoE is synthesised and secreted especially by astrocytes. ApoE isoforms have different effects on a number of pathological processes underlying Alzheimer’s disease. Therefore, understanding the regulated synthesis of apoE is important for determining its role in Alzheimer’s disease. One aim of this work was to examine whether the second-messenger-pathways „adenylyl cyclase/proteinkinase A (PKA)“ and/or „phospholipase C/proteinkinase C (PLC/PKC) are involved in the regulation of apoE secretion in astrocytes. Therefore rat primary hippocampal astrocyte cultures were incubated with various analogues, receptor agonists and neurotransmitters which influence these pathways. Dibutyryl-cAMP (cAMP analogue) increased the apoE secretion. ApoE secretion was also modulated by receptor agonists of the adenylyl cyclase/PKA pathway. Isoproterenol (beta-adrenoceptor agonist) enhanced, while Clonidine (alpha 2-adrenoceptor agonist) decreased, the secreted apoE. In contrast, the PKC activator phorbol 12-myrisate 13-acetate decreased the apoE secretion. It also reversed the effects of dibutyryl-cAMP. Arterenol (alpha 1-adrenoceptor) and serotonin (neurotransmitter) enhanced, whereas carbachol (acetylcholine muscarinic receptor agonist) deceased secreted apoE. It is shown, that the used substances have different effects on the secretion of the nerve growth factor (NGF) as compared to apoE secretion, suggesting that the results obtained were unlikely to be due to a general effect on protein synthesis. It can be concluded that actrocytic apoE production can be regulated by factors that affect cAMP intracellular concentration or activate PKC. The second aim of this work was to examine whether amyloid fragments have an effect on the apoE secretion of astrocytes. Senile amyloid plaques in Alzheimer’s disease brains show apoE immunoreactivity, astrocytes which surround them do not. It is shown, that aged, fibrillic amyloid (1-40) increases apoE secretion. The secreted apoE is bound to the surrounding amyloid conglomerates. The used amyloid fragments did not increase or decrease basic fibroblast growth factor secretion, suggesting that the results obtained were unlikely to be due to a general effect on protein synthesis.
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Melanoma primário da mucosa oral: estudo imunoistoquímico e molecular da via da MAPK / Primary oral mucosal melanoma: an immunohistochemistry and molecular study of MAPK pathwayHsieh, Ricardo 27 June 2012 (has links)
INTRODUÇÃO: O melanoma primário da cavidade oral é uma neoplasia agressiva, rara e originada a partir da proliferação de melanócitos malignos da mucosa. Ele representa aproximadamente de 0,2 a 8% de todos os melanomas. Estudos recentes apontam algumas vias moleculares tem sido encontradas por estarem envolvidas na patogenia dos melanomas. Dentre essas vias destaca-se a via proliferativa da MAPK (mitogen activated protein kinase), esta cascata de sinalização está envolvida no controle do crescimento celular, proliferação e migração, e tem sido relacionada com um papel importante no desenvolvimento e progressão do melanoma cutâneo. OBJETIVOS: Analisar a expressão proteica e mutação pontual dos componentes da via MAPK e correlacionar com os dados clínicos-histológicos. MATERIAL E MÉTODOS: Através da imunoistoquímica avaliar a expressão proteica dos anticorpos RAS; BRAF; MEK1; MEK2; ERK1 e ERK2 em 35 casos de melanomas orais organizados em matriz (TMA: Tissue Microarray) e através de pirosequenciamento avaliar a mutação pontual dos genes BRAF; NRAS; KRAS em 14 casos de melanomas orais. RESULTADOS: Idade dos pacientes entre 9 e 91 anos, sem predileção por sexo, 75% caucasianos, 71,42% acometeram o palato, 80% com aspecto histológico grau III. A análise da expressão proteica foi: RAS (28,57%); BRAF (82,85%); MEK1 (0%); MEK2 (51,43%); ERK1 (20%)e ERK2 (74,28%). Na análise molecular observamos mutações para BRAF (9/14 casos) e NRAS (2/14 casos). CONCLUSÃO: Todos os aspectos da via MAPK necessita de outras elucidações em melanomas de áreas foto-protegidas e melanomas de mucosa e comparando diferentes populações. Entretanto, os resultados deste presente estudo apontam importante alterações na cascata RAS-RAF-MEK-ERK e estes são indicadores de prognóstico ruim em melanomas primários da mucosa oral, independente da exposição solar / BACKGROUND: Primary melanoma of the oral cavity is an aggressive and rare neoplasm and originated from the proliferation of malignant melanocytes of the mucosa. It represents approximately 0.2 to 8% of all melanomas. Recent studies indicate some molecular pathways have been found to be involved in the pathogenesis of melanomas. Among these means there is a proliferative MAPK pathway (\"mitogen activated protein kinase\"), this signaling pathway is involved in controlling cell growth, proliferation and migration, and it has been associated with a role in the development and progression of melanoma skin. OBJECTIVES: To analyze protein expression and mutation of components of the MAPK pathway and to correlate with the clinical, histological data. MATERIALS AND METHODS: Using immunohistochemistry to evaluate the protein expression of RAS, BRAF, MEK1, MEK2, ERK1 and ERK2 antibodies in 35 cases of oral melanomas organized array (TMA: Tissue Microarray) and using pyrosequencing to assess the mutation of the BRAF, NRAS, KRAS in 14 cases of oral melanomas. RESULTS: Age of patients between 9 and 91 years, regardless of gender, 75% Caucasian, 71.42% in palate, 80% with histologic grade III. Analysis of protein expression was: RAS (28.57%); BRAF (82.85%); MEK1 (0%), MEK2 (51.43%); ERK1 (20%) and ERK2 (74.28%). Molecular analysis we found BRAF mutations (9/14 cases) and NRAS (2/14 cases). CONCLUSION: All aspects of the MAPK pathway requires further elucidation in melanomas of photo-protected areas and mucosal melanomas and comparing different populations. However, the results of this study indicate important changes in the cascade RAS-RAF-MEK-ERK and these are indicators of poor prognosis in primary melanomas of the oral mucosa, regardless of sun exposure
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Aspectos Comportamentais e Moleculares da Sensibilização Cruzada entre Estresse e Cocaina. / Behavioral and molecular aspects of the cross-sensitization between stress and cocaineAraujo, Ana Paula Natalini de 10 August 2001 (has links)
Vários estudos clínicos demonstram que existem fatores adicionais ao efeito reforçador primário das drogas que determinam por que alguns indivíduos permanecem usuários ocasionais, enquanto outros progridem para a farmacodependência. Evidências clínicas apontam o estresse como uma variável importante na iniciação, manutenção e recaída ao uso da cocaína ou morfina. Em roedores, a cocaína induz a sensibilização comportamental que se caracteriza pelo aumento progressivo da atividade motora no decorrer do seu uso prolongado. Esse fenômeno é um dos eventos que emergem no decurso temporal das adaptações que levam à farmacodependência. Recentemente foi sugerido que a sensibilização é a gênese do uso compulsivo de drogas. Muitos estudos revelam que o estresse induz a sensibilização comportamental cruzada com os psicostimulantes. O objetivo desse trabalho foi avaliar a sensibilização cruzada entre o estresse e a cocaína, bem como os mecanismos neurais subjacentes. Para tanto foram avaliados as concentrações plasmáticas da corticosterona, a atividade locomotora basal e a induzida por cocaína, e a atividade da PKA nos animais expostos aos estresses agudo ou crônico, previsível ou imprevisível. A exposição ao estresse crônico previsível (EP) aumentou a atividade locomotora basal e a induzida por cocaína. A exposição ao EP aumentou as concentrações basais da corticosterona mas não alterou a atividade da PKA no núcleo acumbens e no corpo estriado. Assim, podemos concluir que a exposição a EP induziu sensibilização comportamental cruzada à cocaína, sendo que esse efeito não se correlacionou com as alterações na atividade da PKA. / A potential etiologic factor in substance abuse is stress, and it is possible that chronic exposure to stressful lifes events is related to the development of drug dependence and relapse. Behavioral sensitization is defined as an augmentation of a response to a drug during repeated drug exposure. Behavioral sensitization has been shown to occur to the locomotor and reinforcing effects of cocaine, amphetamine and other drugs of abuse. It has been suggested that sensitization is the genesis of compulsive drug use. Converging evidence suggests that exposure to stress induces behavioral sensitization to psychostimulant drugs. The present study investigates behavioral and molecular aspects of the cross-sensitization between stress and cocaine. We evaluated the basal and cocaine-induced locomotor activity, corticosterone plasma levels and protein kinase cAMP-dependent (PKA) activity in animals exposed to acute or chronic predictable and unpredictable stress. Increased basal and cocaine-induced locomotor activity was observed in animals exposed to chronic predictable stress. Chronic predictable stress increased basal corticosterone levels but did not change protein kinase A activity in both accumbens and striatum. In conclusion, predictable stress produced sensitization to locomotor effects of cocaine but this effect did not correlate with changes in PKA activity.
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Modelagem molecular aplicada à elucidação dos mecanismos envolvidos na ação antiproliferativa e hemolítica das alquilfosfocolinas / Molecular modeling applied to the elucidation of the antiproliferative and hemolytic mechanisms of action of alkylphosphocholinesMatheus Malta de Sá 28 April 2014 (has links)
As alquilfosfocolinas (APC) são uma classe de fármacos derivados de fosfolipídios endógenos que apresentam potencial antitumoral. Diferentemente de outros fármacos antitumorais que agem no DNA da célula, as APCs têm como primeiro local de ação a membrana plasmática e proteínas de sinalização, como a PKC. O objetivo desse trabalho é elucidar, através de metodologias computacionais, os possíveis mecanismos de ação das APCs que provocam hemólise, inibição da PKC e interação com membranas celulares. Inicialmente, a toxicidade de um conjunto de 34 APCs foi estudada pelos métodos quimiométricos de Análise de Agrupamentos Hierárquicos (HCA) e Componentes Principais (PCA). As moléculas foram simuladas com dinâmica molecular (DM) e propriedades físico-químicas e estruturais foram calculadas para os confôrmeros de menor energia. Após aplicação de HCA e PCA, as APCs foram divididas em 3 grupos, de acordo com suas características estruturais. Os resultados sugerem que a presença de grupos catiônicos volumosos, ou anéis como adamantila e ciclohexila, aumentam a hemólise de compostos de cadeia alquílica longa. Anéis macrocíclicos como ciclopentadecila parecem ser importantes para o potencial hemolítico de compostos com cadeia alquílica curta. Com relação a compostos sem anéis e de cadeia linear, grupos catiônicos menos volumosos parecem favorecer a hemólise. Na próxima etapa do estudo, 7 derivados de APC, com diferentes grupos catiônicos, foram selecionados e ancorados no domínio C2 da PKCα. O intuito foi mapear resíduos de aminoácidos importantes para a interação dos ligantes com a enzima, e comparar com o modo de ligação do ativador endógeno fosfatidilserina (PS). Mais uma vez, HCA e PCA foram aplicados para extrair informação relevante do mapeamento. Os resultados mostraram que as cadeias laterais de Pro188, Asn189, Arg216, Trp247, Asp249 e Thr250 não permitem a aproximação adequada do ligante, o que impede que a porção fosforila se coordene com um dos átomos de cálcio. A porção catiônica da PS, em contrapartida, consegue estabelecer ligação-hidrogênio com Asn189 de forma a posicionar os oxigênios da fosforila para interagir, ao mesmo tempo, com o átomo de cálcio. Com menos pontos de coordenação, a afinidade de ligação do cálcio pela PKCα diminui e a ativação da enzima fica comprometida, interrompendo toda a cascata de sinalização que depende dela. A parte final desse trabalho se dedicou ao estudo da interação da miltefosina com diferentes bicamadas lipídicas sob o ponto de vista termodinâmico. Oito bicamadas de diferentes fosfolipídios foram simuladas por DM e a interação energética da miltefosina foi calculada por Umbrella Sampling. Os resultados mostraram que a miltefosina apresenta maior partição em bicamadas contendo colesterol, sendo a miscibilidade nesses sistemas cerca de 76 vezes maior que os valores encontrados para bicamadas sem colesterol. Além disso, verificou-se que a internalização da miltefosina é mais fácil em regiões contendo lipídeos poli-insaturados, provavelmente devido ao empacotamento mais frouxo da bicamada. Os dados sugerem que a miltefosina age principalmente em rafts lipídicos e que células contendo mais lipídicos poli-insaturados podem incorporar maior quantidade do fármaco. / Alquilfosfocolines (APCs) comprise a class of drugs with antitumor activity derived from endogenous phospholipids. Differently from other drugs whose primary site of action is the DNA, APCs act firstly in the plasma membrane and signaling proteins, such as PKC. The main objective of this work is to elucidate, via computational approaches, the possible mechanisms of actions that cause hemolysis, PKC inhibition and interaction with cellular membranes. Initially, a set of 34 APCs was studied by means of Hierarchical Cluster Analysis (HCA) and Principal Component Analysis (PCA). The molecules were simulated by means of molecular dynamics simulations (MD) and molecular and structural properties were calculated for the lowest-energy conformer. After HCA and PCA methodologies, the set was divided into 3 groups according to their structural features. The findings suggest that the presence of bulky cationic moieties, or the adamantyl and cyclohexil rings, increase the hemolytic potential of compounds with long alkyl chains. Macrocyclic rings, such as cyclopentadecyl, seem to be important to elevate the hemolysis of compounds with short alkyl chains. Regarding linear carbon chain derivatives with no ring substitution, less bulky cationic head groups seem to favor hemolysis. In the next step of this work, 7 APC derivatives were selected and docked in the C2 domain of PKCα. The aim now was to map the residues relevant for ligands interaction compared to the binding mode of the endogenous activator, phosphatidylserine (PS). HCA and PCA were again applied in order to extract relevant information from the mapping. The results showed that the lateral chains of Pro188, Asn189, Arg216, Trp247, Asp249 and Thr250 do not allow the proper approximation of the ligands, impeding the phosphoryl moiety from coordinating with one of the calcium atoms. On the other hand, the cationic moiety of PS forms hydrogen-bonding with Asn189 in order to position the oxygens to interact, at the same time, with a calcium atom. With less coordination sites, calcium binding affinity diminishes and the enzyme activation is compromised, interrupting the signaling cascade. The final part of this work was dedicated to the study of miltefosine interaction with different lipid bilayers from the thermodynamics standpoint. Eight bilayers were simulated with MD and the energetic interaction was calculated via Umbrella Sampling simulations. The findings showed that miltefosine has higher partition in bilayers containing cholesterol, with miscibility of about 76 times higher than the values referring to bilayers without cholesterol. Moreover, it was observed that the internalization of miltefosine is facilitated in regions containing polyunsaturated lipids, probably due to the looser packing. The data suggest that miltefosine acts primarily in lipid rafts, and that cells containing more polyunsaturated lipids in their membranes can incorporate higher quantities of this drug.
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Etude du rôle de la protéine kinase D1 dans les intercommunications entre les voies de signalisation des récepteurs à activité tyrosine kinase et dans la prolifération des cellules tumorales mammaires MCF-7 / Studying the role of protein kinase D1 in the control of IGF-I signal transduction pathway and MCF-7 breast cancer cell proliferationKaram, Manale 20 December 2011 (has links)
La protéine kinase D1, PKD1, est une nouvelle sérine/thréonine kinase activée par de nombreux mitogènes et dérégulée dans de nombreux types de cancers dont le cancer du sein, ce qui suggère un rôle de cette kinase dans la prolifération cellulaire et la tumorigenèse. Cependant, le rôle précis et les cibles de PKD1 ne sont pas encore bien connus. Au cours de ce travail, nous avons tout d’abord démontré que PKD1 est activée par les facteurs de croissance épidermique (EGF) et fibroblastique (FGF) et qu’elle régule la voie de signalisation de l’insulin-like Growth Factor-I (IGF-I). D’autre part, nos résultats démontrent que PKD1 favorise les propriétés pro-prolifératives et pro-tumorales des cellules MCF-7 dérivées d’un adénocarcinome mammaire humain estrogéno-dépendant. Ces mécanismes mettent en jeu des voies de signalisation dépendantes de protéines kinases (la voie MEK/ERK) et hormonales (la voie estrogène/REα). Ainsi, l’ensemble de ce travail fait apparaître PKD1 comme une nouvelle cible thérapeutique anti-tumorale potentielle. / Protein kinase D1, PKD1, is a novel serine/threonine kinase which can be activated by mitogens and whose expression is altered in many tumors such as breast cancer, suggesting a role for this kinase in cancer development. However, its precise role and targets are still unclear. Our study identified PKD1 as a new regulatory kinase implicated in the control of IGF-I signal transduction pathway. Furthermore, we showed that PKD1 enhances estrogen-dependent MCF-7 breast cancer cell proliferation and tumorigenesis through the regulation of MEK/ERK and estrogen/ERα pathways. Thus, this work may define PKD1 as a novel potential anti-tumor therapeutic target.
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Potencial do treinamento físico para a prevenção de danos renais em camundongos: papel da proteína ativada por AMP (AMPK) / Potential of aerobic exercise training to prevent kidney damage in mice: the role of AMP-activated protein (AMPK)Cynthia Rodrigues Müller 29 June 2018 (has links)
O acúmulo de lipídeos associado à obesidade, resistência à insulina (RI) e diabetes mellitus tipo 2 (DM2) pode levar ao desenvolvimento de danos renais, e diversos mecanismos podem estar envolvidos neste processo, dentre os quais: 1) redução na atividade da proteína ativada por AMP (AMPK); 2) hiperativação do sistema renina angiotensina (SRA) e consequente aumento na produção de angiotensina II (Ang II). O treinamento físico aeróbio (TFA) promove melhora metabólica significativa, no entanto, pouco se sabe sobre os mecanismos celulares induzidos pelo TFA contra o desenvolvimento de danos renais associados com doenças metabólicas. Sendo assim, o objetivo deste estudo foi avaliar o potencial do TFA para a prevenção de danos renais induzidos por dieta de cafeteria, e a participação do SRA e da proteína AMPK nessa resposta. Para isso, camundongos machos adultos C57BL6/J foram separados em grupos (n=13/grupo) sedentários (SED) alimentados com dieta normocalórica (NO) ou de cafeteria (CAF) (SED-NO e SED-CAF, respectivamente) e treinados (TF) alimentados com dieta NO ou CAF (TF-NO e TF-CAF, respectivamente). O TFA foi realizado a 60% da capacidade máxima, simultaneamente com as dietas durante 8 semanas. A dieta de cafeteria causou maior adiposidade, intolerância à glicose e RI no grupo SED-CAF, enquanto o TFA preveniu esses prejuízos no grupo TF-CAF. Os animais SED-CAF apresentaram 88% de aumento no ritmo de filtração glomerular (RFG), maior deposição lipídica renal e redução do espaço de Bowman comparado ao SED-NO, as quais foram prevenidas no grupo TF-CAF. Não houve alteração no conteúdo de colágeno IV e fibronectina, entretanto o TNF-alfa aumentou em ambos os grupos alimentados com dieta de cafeteria. Houve aumento de 27% da expressão proteica da p-AMPK no grupo TF-CAF, sem diferenças na expressão de t-ACC, p-ACC, PGC1-alfa e SIRT-1. A expressão gênica do SREBP-1 não diferiu entre os grupos, porém a expressão do SREBP-2 aumentou nos grupos SED-CAF e TF-CAF comparado aos grupos SED-NO e TF-NO. No soro, apenas a atividade da ECA2 aumentou nos grupos TF-NO e TF-CAF comparados aos sedentários. No rim, a atividade da ECA aumentou 46% no grupo SED-CAF comparado ao SED-NO, e o TFA foi capaz de prevenir esse aumento. No entanto, a Ang II renal aumentou nos grupos SED-CAF, TF-NO e TF-CAF comparados ao grupo SED-NO. Não houve diferença nos componentes do SRA ECA2/Ang 1-7/Mas renal. Em conclusão, o TFA preveniu os danos renais causados pela dieta de cafeteria, tais como acúmulo de lipídeos nos rins, aumento do RFG e redução do espaço de Bowman, e essa resposta está associada, pelo menos em parte, com a maior ativação da AMPK independente da contribuição do SRA / Lipid accumulation observed in the obesity, insulin resistance (IR) and Diabetes Mellitus type 2 (DM2) may lead to the development of renal damage, and several mechanisms may be involved in this process, such as: 1) reduction in the AMP-activated protein (AMPK) activity; 2) hyperactivation of the renin angiotensin system (RAS) and consequent increase in the production of Angiotensin II (Ang II). Aerobic exercise training (AET) promotes significant metabolic improvement, however, little is known about the cellular mechanisms induced by AET against the development of kidney damage associated with metabolic diseases. Thus, the present study aimed to evaluate the potential of AET to prevent kidney damage induced by cafeteria diet, and the participation of RAS and AMPK protein in this response. Adult male C57BL6/J mice were separated into sedentary (SED) groups fed a normocaloric (NO) or cafeteria (CAF) (SED-NO and SED-CAF, respectively) and trained (TF) fed a NO or CAF diet (TF-NO and TF-CAF, respectively). The AET was performed at 60% of the maximum capacity simultaneously with the diets during 8 weeks. The cafeteria diet induced adiposity increase, glucose intolerance and IR, while AET prevented these changes. Animals SED-CAF increased 88% of glomerular filtration rate (GFR), increased renal lipid deposition and reduced Bowman\'s space compared to SED-NO, which were prevented by AET in the TF-CAF group. There was no change in the collagen IV and fibronectin, however TNF-alpha increased in both cafeteria diet fed groups. There was a 27% increase in the protein p-AMPK expression in the TF-CAF group, with no changes in t-ACC, p-ACC, PGC1-alpha and SIRT-1 expression. The SREBP-1 gene expression did not change among groups, but SREBP-2 gene expression increased in the SED-CAF and TF-CAF groups compared to the SED-NO and TF-NO groups. In the serum, only the activity of ACE 2 increased in TF-NO and TF-CAF groups compared to sedentary groups. In the kidney, ACE activity increased 46% in the SED-CAF group compared to SED-NO, nevertheless the AET was able to prevent this increase. Renal Ang II concentration increased in SED-CAF, TF-NO and TF-CAF groups compared to the SED-NO. No differences were observed in the components of renal RAS ACE2/Ang 1-7/Mas. In conclusion, AET prevented the renal damage caused by cafeteria diet, such as lipid accumulation, increased GFR and reduced Bowman space, and these responses are associated, at least in part, with greater activation of the AMPK protein independent of the RAS contribution
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SPINAL KAPPA OPIOID RECEPTOR ACTIVITY INHIBITS ADENYLYL CYCLASE-1 DEPENDENT MECHANISMS OF CHRONIC POSTOPERATIVE PAINCustodio, Lilian 01 January 2019 (has links)
Chronic postoperative pain impacts millions of individuals worldwide that undergo a variety of surgical procedures. Opioids remain the mainstay analgesics of acute and perioperative pain; however, prolonged opioid therapy may lead to life-threating adverse effects, tolerance, dependence, and addiction. Therefore, unraveling the cellular mechanisms that drive persistent pain states and opposing endogenous analgesia provided by opioid receptor signaling, may lead to novel analgesics. Evidence suggests that tissue injury leads to increased sensitization of the spinal cord nociceptive neurons which increases susceptibility to chronic pain via an N-methyl-D-aspartate (NMDA) receptor activation of calcium-sensitive adenylyl cyclase isoform 1 (AC1). This phenomenon, named latent pain sensitization (LS), is mediated by a compensatory response of endogenous inhibitory systems.
In this dissertation, we test the hypothesis that surgical insult promotes prolonged activation of kappa opioid receptors (KOR) which mask LS via attenuation of pro-nociceptive AC1 signaling pathways in both male and female animals. We employed a murine model of chronic postoperative pain that promotes LS in the spinal cord and closely resembles the phenotypic features of postoperative pain in human subjects. When behavioral signs of hyperalgesia resolved, we targeted spinal opioid receptor systems and pronociceptive modulators with intrathecal delivery of selective pharmacological antagonists and assessed behavioral signs of hyperalgesia and spinal nociceptive sensitization. We propose that LS is kept in remission by a long-lasting compensatory response of tonic endogenous KOR signaling that hinders a pronociceptive LS pathway that includes not only AC1 but also two downstream targets: protein kinase A (PKA) and exchange protein activated by cAMP (Epac1/2) - in a sex-dependent manner. Our results propose new therapeutic targets for the management of persistent postoperative pain and underscore the importance of tailoring sex-specific pain management strategies.
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The Role of the Na+/H+ Exchanger isoform 1 in cardiac pathologyMraiche, Fatima 11 1900 (has links)
The mammalian Na+/H+ exchanger isoform 1 (NHE1) is a ubiquitously expressed membrane protein that regulates intracellular pH. In the myocardium, NHE1 has been implicated in ischemia/reperfusion (I/R) and cardiac hypertrophy (CH). Hormonal, autocrine and paracrine stimuli, acidosis, cardiotoxic metabolites released during I/R and CH increases NHE1 protein expression and activity. The involvement of NHE1 in CH and I/R has been further supported with the use of NHE1 inhibitors, which have been
beneficial in the prevention/regression of several models of CH and I/R injury. Despite the fact that elevation of NHE1 expression and activity have been demonstrated in several models of heart disease, it was unclear whether elevation of NHE1 protein expression was sufficient to induce a specific cardiac pathology, or whether activation of the protein was required. To understand the direct role of NHE1 in CH and I/R, an in vivo and in vitro gain-of-function model, expressing varying levels and activities of NHE1
were examined. In vivo, our N-line mice expressed wild type NHE1 and our K-line mice expressed constitutively active NHE1. In vitro, neonatal rat ventricular cardiomyocytes were infected with the IRM adenovirus containing wild type NHE1 or the K-IRM adenovirus containing active NHE1. We demonstrated that expression of constitutively active NHE1 promotes CH to a much greater degree than expression of wild type NHE1 alone, both in vivo and in vitro. This NHE1-dependent hypertrophic response occurred
independent of signaling pathways involved in CH including, mitogen activated protein kinases, p90 ribosomal S6 kinase, calcineurin and glycogen synthase kinase. The NHE1-dependent hypertrophic effect also occurred independent of gender. In addition, the expression of active NHE1 increased the susceptibility of intact mice to neurohormonal stimulation and progressed the hypertrophic response. When these hearts expressing active NHE1 were subjected to I/R using the ex vivo working heart perfusion model, fatty
acid (FA) oxidation and glycolysis rates increased, thus generating greater ATP
production rates. This was associated with cardioprotective effects in the myocardium, as well as a more energetically efficient myocardium. Expression of the endoplasmic reticulum (ER) stress response proteins, calreticulin and PDI were also shown to be increased relative to controls, and may contribute to the cardioprotection observed. We demonstrate that active NHE1 induces cardioprotection and alters cardiac metabolism in working hearts subjected to I/R. Overall, our results suggest that expression of active NHE1 has a double edged sword effect, on one side it induces CH while on the other
side, it protects the heart against I/R injury.
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