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Etude du rôle de la réponse UV sur le contrôle de la réparation par excision de nucléotides (NER) des dommages à l’ADN : rôle des voies MAPK et de l’ADN polymérase etaRouget, Raphaël 05 1900 (has links)
La réponse cellulaire aux ultra-violets (UV), ou réponse UV, est une réponse complexe et spécialisée dans l’adaptation et la tolérance des dommages aux UV. Celle-ci est initiée par un grand nombre d’évènements moléculaires et de signalisation nucléaire mais aussi au niveau de la membrane plasmique ou du cytoplasme. L’importance et l’influence exactes de ces évènements sur la réparation par excision de nucléotides (NER) des dommages UV à l’ADN sont encore mal comprises et doivent encore être méthodiquement démontrées. Dans cette thèse, grâce à l’utilisation d’une méthode sensible d’analyse de la réparation NER basée sur la cytométrie en flux, il est montré, dans un premier temps, que l’activité des voies MAPK (Mitogen-Activated Protein Kinases), qui sont des voies de signalisation de stress UV d’origine cytoplsamique, ne participent pas à l’efficacité de réparation NER des dommages UV dans les cellules humaines. En effet, l’abrogation de la signalisation MAPK, par inhibition pharmacologique, par utilisation de mutants dominant-négatifs ou par inhibition de leur expression endogène, ne révèlent aucun changement de la cinétique de réparation des dommages UV par excision de nucléotides. Cependant, l’utilisation de cette même méthode de réparation, mais cette fois, appliquée pour l’étude de réparation NER en fonction du cycle cellulaire, a permis de mettre en évidence la nécessité fonctionnelle de l’ADN polymérase translésionnelle eta (Pol η) dans la réparation NER des dommages UV, uniquement en phase S. Cette observation fut initialement caractérisée dans les cellules de patients affectés du syndrome variant de xérodermie pigmentaire (XP-V) puis, confirmée ensuite par l’inhibition de l’expression de Pol η endogène ou par la complémentation avec des mutants non-fonctionnels dans les cellules XP-V. Ces résultats indiquent que, contrairement à la réponse UV MAPK cytoplasmique, les évènements nucléaires comme la synthèse translésionnelle, peuvent influencer l’efficacité de réparation NER en phase S. Plus particulièrement, ces données établissent un lien possible entre la réparation NER en phase S et les niveaux de stress réplicatifs, révélé ici par la déficience fonctionnelle Pol η ou ATR. Les observations, présentées dans cette thèse, renforcent un rôle du point de contrôle S aux UV sur l’efficacité de la réparation NER et suggèrent que l’inhibition NER, observée en phase S dans les cellules XP-V, est modulée par le stress réplicatif. Un tel moyen de contrôle pourrait avoir une action plutôt protectrice pendant cette phase critique du cycle cellulaire. Mots clés: UV, translésionnelle, eta, MAPK, NER, CPD, cytométrie, phase-S, tolérance. / The UV-response is a complex cellular response to UV irradiation, which allows cellular adaptation and protection against deleterious effects of UV. This specialized response involves numerous molecular and signaling events from plasma membrane and from the nucleus represented, among others, by Mitogen-Activated Protein Kinase (MAPK) pathway activation and translesion synthesis respectively. More particularly, the exact role of these events on the removal UV-induced DNA damage by nucleotide excision repair (NER) in human cells is poorly understood and documented. By using a sensitive flow cytometry based-NER assay, presented and validated in this thesis, to quantify the removal of UV-DNA damage, it was unexpectedly found that Mitogen-Activated Protein Kinase (MAPK) signalling, originating from the the plasma membrane, does not regulate the efficiency of UV-induced DNA damage repair in human cells. Indeed, MAPK inhibition with pharmacological inhibitors, expression of short-hairpin RNA or dominant negative mutant, all together, substantiate fully the lack of effect of this signalling pathway on UV-damage removal by NER in human primaries and tumorous cells. Surprisingly, the same NER assay, applied to quantify the removal of UV-induced DNA damages as a function of the cell cycle, has shown a requirement of functional translesion synthesis polymerase eta (Pol η) for efficient UV-DNA damage repair in human cells uniquely during S-phase, where its function is required for the bypass of UV DNA damage. This observation, originally made in fibroblasts from xeroderma pigmentosum variant syndrome (XP-V) afflicted patients, was further confirmed in normal human cells, by abrogation of endogenous Pol η expression or by complementation with Pol η in XP-V cells. All together, the data presented here, indicate that MAPK signaling play no role in NER-mediated UV-damage removal, but highlight a role for UV-DNA damage tolerance response, as translesion synthesis, in regulation of NER efficiency. More particularly, these observations establish a potential link between the S-Phase Repair (SPR) of UV-DNA damages and replicative stress, revealed by a deficiency of Pol η or ATR. This SPR defects seen under acute replicative stress conditions could impact tumorogenesis or chemotherapy outcomes. Moreover, SPR defects, seen in XP-V cells could be controlled by replicative stress, and also reflect a protective coordination to reduce high risks of genetic or chromosomal aberrations that may occur during DNA replication upon UV exposure.
Key Words: Translesion, UV, TLS, eta, MAPK, NER, S-phase, flow-cytometry, CPD.
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Étude de l'activation des basophiles par le système tachykinergiqueOuaked, Nadia January 2005 (has links)
Mémoire numérisé par la Division de la gestion de documents et des archives de l'Université de Montréal.
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Régulation de l’activité transcriptionnelle des récepteurs des estrogènes (ER) par le récepteur à chimiokine CXCR4 et les récepteurs à activité tyrosine kinase ErbB2 et ErbB3Sauvé, Karine 08 1900 (has links)
La régulation de la transcription des gènes par les récepteurs des estrogènes ERα et ERβ joue un rôle important dans la croissance cellulaire et dans le développement du cancer du sein. Une augmentation de l’expression de CXCR4 et de son ligand SDF-1/CXCL12 corrèle avec un phénotype plus agressif du cancer du sein. Ici, nous démontrons un mécanisme de boucle de régulation positive entre la signalisation de CXCR4/SDF-1 et l’activité transcriptionnelle des ERs dans des cellules cancéreuses mammaires. L’activité transcriptionnelle de ER et l’expression de gènes cibles de ER, dont SDF-1 lui-même, sont augmentées dans la lignée cancéreuse mammaire MCF-7 en réponse à SDF-1. Ces effets sont bloqués par l’anti-estrogène fulvestrant et par la délétion de CXCR4. Par ailleurs, l’expression des gènes et la prolifération des cellules cancéreuses mammaires MCF-7 en réponse à l’estrogène sont altérées par l’inhibition de CXCR4. La signalisation par les facteurs de croissance joue un rôle important dans le cancer du sein. La surexpression et la dérégulation de la signalisation par le récepteur à activité tyrosine kinase ErbB2 corrèlent avec un phénotype tumoral mammaire plus agressif et un moins bon pronostic. Cependant, comment la signalisation de ErbB2 et de CXCR4 sont fonctionnellement reliées dans la régulation de la réponse de ER dans les cellules cancéreuses mammaires n’est pas connue. Nous démontrons ici que CXCR4 régule négativement l’expression protéique de ErbB2 et de son partenaire d’interaction ErbB3 ainsi que la phosphorylation de ErbB2. CXCR4 altère l’activation de la voie PI3-K/Akt par le dimère ErbB2/ErbB3 en réponse à héréguline alors qu’en présence de SDF-1, les niveaux d’activation sont récupérés. Nous avons trouvé que héréguline-β promouvoit la phosphorylation de la sérine 339 de CXCR4, un site important pour l’internalisation et la signalisation du récepteur. De plus, le recrutement de ErbB2 à CXCR4 est favorisé par ErbB3 et héréguline-β. L’activité transcriptionnelle ainsi que l’expression des gènes cibles de ER en réponse à l’héréguline sont relevées avec l’expression de CXCR4 et partiellement récupérées avec l’addition de SDF-1. Ces résultats démontrent que le recrutement de CXCR4 à ErbB2 altère la signalisation médiée par ErbB2/ErbB3 ainsi que l’activité hormonale de ER dans des cellules cancéreuses mammaires. Nous travaux ont permis d’identifier et de caractériser l’impact de la signalisation médiée par des récepteurs membranaires sur la réponse transcriptionnelle de ER dans des cellules cancéreuses mammaires. La signalisation membranaire est un facteur pouvant contribuer à la résistance aux thérapies endocriniennes et donc cibler les récepteurs impliqués s’avèrerait utile pour améliorer les traitements existants et mettre au point de nouvelles approches. / Induction of estrogen-regulated gene transcription by estrogen receptors ERα and ERβ plays an important role in breast cancer development and growth. High expression of the chemokine receptor CXCR4 and its ligand CXCL12/SDF-1 has also been correlated with aggressive breast tumor phenotypes. Here, we describe a positive regulatory loop between CXCR4/SDF-1 signaling pathway and ER transcriptional competence in human breast cancer cells. Treatment of breast carcinoma MCF-7 cells with SDF-1 increased ER transcriptional activity and expression of ER target genes, including SDF-1 itself. These effects were blocked by the antiestrogen ICI-182780 and by CXCR4 silencing, and conversely, estrogen-induced gene expression and growth of MCF-7 cells were impaired upon CXCR4 inhibition. Growth factor signaling also plays an important role in breast cancer. Overexpression and deregulated signaling of receptor tyrosine kinase ErbB2 correlate with aggressive breast tumor phenotype and poor outcomes. However, how ErbB2 and CXCR4 signaling is functionally related to regulate ER response in breast cancer cells is not known. Here we show that steady-state levels of ErbB2 and its dimeric partner ErbB3, as well as ErbB2 tyrosine phosphorylation were negatively regulated with the expression of CXCR4. CXCR4 downregulated ErbB2/ErbB3 dimer activation of the PI3-K/Akt pathway in response to ErbB3 ligand heregulin-β, whereas addition of SDF-1 restored activation levels. We found that heregulin-β promoted CXCR4 phosphorylation at serine 339, an important site for CXCR4 internalization and signaling. In addition, ErbB2 recruitment to CXCR4 was enhanced by ErbB3 and heregulin-β. Transcriptional activity and gene expression measurement showed that the hormonal repression of ER was relieved with the expression of CXCR4 and partially recuperated with the addition of SDF-1. Together, these results show that CXCR4 recruitment to ErbB2 alters ErbB2/ErbB3 signaling pathway and downstream regulation of ER hormonal activity in in breast cancer cells. Our work has enabled us to identify and characterize the impact of membrane receptors signaling on ER transcriptionnal response in breast cancer cells. Membrane signaling is one of the factors involved in endocrine therapy resistance and targeting the receptors implicated could be benificial to improve existing treatments and to work on the creation of new ones.
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Regulace signalní dráhy ERK prostřednictvím scaffold proteinu RACK1 / The regulation of the ERK signalling pathway by scaffold protein RACK1Bráborec, Vojtěch January 2012 (has links)
The ERK signalling cascade comprised of protein kinases Raf, MEK and ERK is an evolutionarily conserved member of MAPK family that is activated in response to wide range of extracellular stimuli. The ERK pathway controls fundamental cellular functions including cell proliferation, differentiation, apoptosis or cell motility. To control such a diverse cellular responses by a single pathway cells have evolved regulatory mechanisms that channel the extracellular signals towards the specific biological response. Crucial to this control are non- enzymatic proteins termed scaffolds that associate with and enhance functional interaction of the components of MAPK pathways and can regulate amplitude, timing, specificity and location of signals. Scaffold protein RACK1 associates with several components of cell migration machinery including integrins, FAK, Src and the ERK pathway core protein kinases. RACK1 regulates distinct steps of cell migration such as establishment of cell polarity and focal adhesion turnover, however, the molecular mechanism by which RACK1 regulates these processes remains largely unknown. The main aim of this study was to investigate the functional role of RACK1 in cell motility, in particular to identify new effector proteins utilized by the ERK pathway and RACK1 in the regulation of...
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Participação de proteínas tirosina quinase ativada por mitógenos (MAPKs) na indução do fator inibidor de leucemia (LIF) em células estromais da medula óssea de crianças com sindromes mielodisplásicas (SMD) / Participation of protein tyrosine kinase activated by mitógenos (MAPKs) in the induction of the inhibitory factor for leukemia (LIF) stromal cells in the bone marrow of children with Myelodysplastic Syndromes (MDS)Costa, Simone Vieira da 22 September 2008 (has links)
Em nosso trabalho anterior mostramos que dentre as citocinas analisadas, os níveis do mRNA de LIF nas células estromais pediátricas, de SMD e de SMD-LMA foram maiores quando comparados às células estromais de crianças saudáveis. No presente estudo, observamos um aumento tempo dependente nos níveis da proteína LIF após adição de SFB em todas as células analisadas (células estromais de crianças saudáveis, de SMD e de SMD-LMA). O envolvimento de p38, ERK e JNK na expressão LIF nestas células foi determinado pelo uso de inibidores dos membros das proteínas quinase ativadas por mitógenos: ERK (PD98059), p38 (SB302580) e JNK (SP600125) os quais inibiram a produção de LIF nas células estromais de crianças saudáveis, após estas serem estimuladas por SFB. No entanto, os níveis da expressão de LIF-induzido por soro nas células estromais de SMD e de SMD-LMA tratadas com SB302580 (p38) foram significativamente diminuídos, em comparação com a inibição observada no tratamento com PD98059 e SP600125 (p <0001, teste ANOVA). Em adição analisamos as formas fosforiladas de p38 e ERK, após 48hs na ausência ou na presença de soro por diferentes tempos. Níveis de atividade de ERK e do p38 foram inicialmente elevados na ausência de soro. A atividade de p38 foi sustentada após tratamento com SFB, entretanto, ERK apresentou uma variação de atividade durante o tratamento. Sugerimos que a sinalização das MAPKs (p38, ERK e JNK), em resposta a fatores de crescimento presentes no soro, parece desempenhar um papel importante na expressão da LIF em células estromais de crianças saudáveis, mas a sinalização do p38 parece ser funcionalmente mais importante nas mielodisplasias ou naquelas associadas à LMA / Our previous report showed that among the cytokines analysed, LIF mRNA levels in stromal cells from pediatric MDS and MDS-AML were higher as compared to those found in healthy stromal cells. In the present study, we have observed an increased protein LIF levels in a time dependent manner after FCS stimulation in all stromal cells analysed (MDS, MDS-AML and healthy children) and the involvement of p38, ERK and JNK pathways in the LIF expression in these cells was determined. In stromal cells from two healthy children, LIF production was equally inhibited in a dose dependent manner after FCS stimulation by mitogen-activated protein kinase (MAPKs) members inhibitors: ERK (PD98059), p38 (SB302580) and JNK (SP600125). However, in MDS and MDS-AML stromal cells, the levels of LIF-induced by serum, were significantly decreased by SB302580, as compared with the inhibition observed by treatment with PD98059 and SP600125 (p <0,001, ANOVA test). In addition we have analysed the presence of p38 and ERK phosphorylated forms in stromal cells, after 48hs of serum starvation or in the presence of FCS for different times. Activated ERK and p38MAPK levels were initially elevated in the absence of serum. p38MAPK activation was sustained after treatment with FCS, whereas ERK presented a variation of the activated forms during treatment. We suggest that the signalling of the MAPKs (p38, ERK and JNK) in response to growth factors present in the serum, seems to play an important role in the LIF expression by stromal cells of healthy children, but p38 MAPK signalling appears to be functionally more important in MDS and MDS-AML
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Efeito neuroprotetor de Anacardium Microcapum-duke em dano induzido por 6-ohda em córtex cerebral de PintainhosMartins, Illana Kemmerich, Posser, Thaís 05 April 2017 (has links)
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Previous issue date: 2017-04-05 / A Doença de Parkinson (DP) é uma doença degenerativa, crônica e progressiva, acomete o sistema nervoso central e é responsável pela degeneração dos neurônios dopaminérgicos. Sabese que alterações genéticas e ambientais como exposição a agroquímicos, estresse oxidativo e disfunção mitocondrial estão associados à progressão da doença. A neurotoxina 6hidroxidopamina (6-OHDA), é um análogo estrutural da catecolamina dopamina, servindo como um modelo de neurotoxicidade por mecanismos semelhantes ao observado na DP. O mecanismo de citotoxicidade atribuído a 6-OHDA está diretamente ligado com a produção de espécies reativas de oxigênio (EROs) oriundas da inibição da respiração mitocondrial e sua auto-oxidação. A busca por terapias alternativas como os antioxidantes tem crescido ao longo dos anos, buscando atenuar a progressão da DP através de compostos bioativos de plantas. Neste estudo buscou-se avaliar o efeito neuroprotetor de Anacardium microcarpum frente ao dano induzido pela neurotoxina 6-OHDA em fatias corticais de pintainhos. Fatias foram incubada por 2h na presença da neurotoxina e diferentes concentrações do extrato hidroalcoólico (AMHE) e frações acetato de etila (AMEAF) e metanólica (AMMF) de A. microcarpum. AMHE, AMMF e AMEAF (1-1000 µg/mL) não apresentaram citotoxicidade per se nas fatias corticais. AMMF e AMEAF restauraram a queda da viabilidade induzida por 6OHDA (500 µM) a partir da concentração de 100 µg/mL, sendo a AMMF nesta mesma concentração, capaz de reverter a peroxidação lipídica causada pelo composto. 6-OHDA aumentou a atividade de GST e TrxR e diminuiu a atividade da GPx, além de diminuir os níveis de GSH total e aumentar a razão GSH/GSSG. Tais efeitos não foram observados na presença de AMME. Ainda, 6-OHDA inibiu o complexo I da cadeia respiratória mitocondrial, sendo que a fração não reverteu este efeito. Além disso, a auto-oxidação de 6-OHDA não foi revertida pela planta. A fosforilação de p38, JNK1/2, ERK1/2 e AKT bem como clivagem de PARP foi avaliada frente ao tratamento com neurotoxina e fração metanólica. A fração não levou a aumentos significativos na fosforilação das MAPKs bem como na expressão destas, também não levou à clivagem da proteína PARP. Entretanto, na presença de fração e 6-OHDA houve aumento significativo na fosforilação de ERK1/2 sem alterar sua expressão. Averiguou-se o envolvimento de ERK1/2 e AKT, proteínas envolvidas nos mecanismos de sobrevivência, na neurotoxicidade induzida por 6-OHDA através do uso de inibidores. Observou-se que na presença de inibidor, o extrato não foi capaz de proteger contra o dano promovido por 6-OHDA. Nossos resultados sugerem que o extrato tem ação antioxidante contra o estresse oxidativo decorrente da inibição da respiração mitocondrial e auto-oxidação da neurotoxina, sem no entanto interferir nestes processos. Além disso, sugere-se que as proteínas anti-apoptóticas ERK1/2 e AKT estejam envolvidas no efeito neuroprotetor da fração por mecanismos ainda não conhecidos. Nossos dados mostram pela primeira vez a ação neuroprotetora de A. microcarpum frente ao dano neuronal induzido pela 6-OHDA em fatias cerebrais e / Parkinson's disease (PD) is a degenerative, chronic and progressive disease, which affects the central nervous system and it is responsible for degeneration of dopaminergic neurons. It is known that genetic and environmental factors such as exposure to agrochemical, oxidative stress and mitochondrial dysfunction are associated with progression of the disease. 6hydroxydopamine
(6-OHDA) is a structural analogue of catecholamine dopamine, used as a model of neurotoxicity by similar mechanism in PD. The mechanism of cytotoxicity attributed to 6-OHDA is linked to the production of reactive oxygen species (ROS) from inhibition of mitochondrial respiration and its autoxidation. The search for alternative therapies such as antioxidants has grown over the years, seeking to mitigate the progress of PD through bioactive plant compounds. This study aimed to evaluate the neuroprotective effect of Anacardium microcarpum on the damage induced by neurotoxin 6-OHDA in cortical slices of chicks. Slices were incubated for 2 h in the presence of neurotoxin and different concentrations of hydroalcoholic extract (AMHE) and ethyl acetate (AMEAF) and methanol (AMMF) fractions of A. microcarpum. AMHE, AMMF and AMEAF (1-1000 μg/mL) did not show cytotoxicity per se in the cortical slices. AMMF and AMEAF restored the drop in viability caused by 6OHDA (500 μM) from the concentration of 100 μg/mL. 6-OHDA increased GST and TrxR activity while GPx activity and total GSH levels was decreased with an augmented ratio GSH / GSSG. These effects were not observed in the presence of AMMF and 6-OHDA. Furthermore, 6-OHDA inhibited the complex I of the mitochondrial respiratory chain but this effect was not reversed by fraction as well as the self-oxidation of 6-OHDA was not avoided by the plant. Phosphorylation of p38, JNK1/2, ERK1/2 and AKT as well as PARP cleavage was evaluated against treatment with neurotoxin and methanolic fraction. The methanolic fraction and 6OHDA did not alter phosphorylation of MAPKs, as well as expression of these proteins, not did it result in the cleavage of the PARP protein in the time studies. However, in the presence of fraction and 6-OHDA there was a significant increase in ERK1/2 phosphorylation without altering its expression. The involvement of ERK1/2 and AKT proteins in protective mechanism of fraction was analyzed through the use of inhibitors. It was observed that in presence of inhibitor, the extract was not able to protect against the damage promoted by 6-OHDA. Our results suggest that the extract presented antioxidant action against oxidative stress resulted from the inhibition of mitochondrial respiration and neurotoxin autoxidation. In addition, it is suggested that antiapoptotic proteins ERK1/2 and AKT are involved in neuroprotective effect of the fraction. Our data show for the first time a neuroprotective action of A. microcarpum against neuronal damage induced by 6-OHDA in cerebral slices and highlights the potential of this plant as a source of bioactive compounds with therapeutic potential
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Role de l’axe endothéline-1 et des map kinases dans la physiologie des leiomyomes utérins de rates / Role of endothelin-1 axis and MAP kinase in the physiology of rat uterine leiomyomasOyeniran, Clément 04 February 2011 (has links)
Nous montrons pour la première fois qu’en plus de la MAPK ERK1/2, l’endothéline-1 (ET-1) via les récepteurs ETA et ETB active une autre MAP kinase : la p38 uniquement dans les cellules de léiomyomes utérins de rate (ELT3) mais pas dans les cellules myométriales saines. Dans les cellules ELT3, l’analyse des voies de signalisation montre que malgré les similitudes observées entre les modes d’activation des voies p38 et ERK1/2 par ET-1, celles-ci sont activées de façon indépendante l’une de l’autre. En plus, la forskoline active p38 (mais pas ERK1/2), par contre l’activation de p38 par ET-1 n’implique pas une production d’AMPc. Par ailleurs ERK1/2 et p38 coactivées par ET-1 coopèrent pour augmenter l’expression de COX2 et la production des prostaglandines E2 (PGE2) pour favoriser l’effet antiapoptotique de ET-1. De plus p38 activée par ET-1 contribue à la prolifération des léiomyomes. Nos résultats élucident les mécanismes par lesquels ET-1 contribue à la croissance des léiomyomes. / We demonstrated for the first time, that in addition to the MAPK ERK1/2, Endothelin-1 (ET-1) through ETA and ETB receptors activated another MAP kinase: p38 only in uterine leiomyoma cells (ELT3) but not in normal myometrial cells. In ELT3 cells, analysis of signaling pathways showed that, despite the similarities between the mechanisms involved in the activation of p38 and ERK1/2 pathways by ET-1, these kinases are activated independently one of another. In addition, forskolin (a cAMP inducer), activated p38 (but not ERK1/2), whereas the activation of p38 by ET-1 did not involve production cAMP. Moreover the coactivated ERK1/2 and p38 pathways by ET-1 cooperated to increase expression of COX2 and prostaglandin E2 (PGE2) production. This PGE2 like ET-1 exerted an antiapoptotic effect in ELT3 cells. Furthermore, p38 activated by ET-1 contributes to the proliferation of ELT3 leiomyoma cells. Our data highlight the mechanisms by which ET-1 could promote uterine leiomyoma growth.
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The roles of the small pMEKK subfamily comprising MAPKKK19, 20 and 21 in Arabidopsis thalianaBai, Fangwen 01 1900 (has links)
No description available.
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Microbial and maternal influences on allergic sensitization during childhood: defining a role for monocytesSaghafian Hedengren, Shanie January 2009 (has links)
Allergic diseases are influenced by genetics and the environment. Maternal allergy appears to confer a higher risk for allergic sensitization than paternal allergy, suggesting an in utero influence. A decrease in particular infections or a lower exposure to microbial components during infancy is suggested to contribute to the high allergy prevalence in affluent societies. Toll-like receptors (TLR) 2 and 4 recognize peptidoglycan (PGN) and LPS respectively, are expressed on e.g. monocytes, and have been implicated in modulating the risk of IgE-sensitization. This thesis aimed to study the influence of maternal allergy and early microbial exposure on monocyte function and allergic sensitization during childhood. Blood samples from children participating in a prospective allergy cohort were used. Two-year old infants with allergic mothers had lower IL-6 production and reduced activation of the TLR-signalling intermediate p38-MAPK in response to PGN than children with non-allergic mothers. In 5-year old children, allergic disease and not maternal allergy influenced monocytic TLR2-regulation. Five-year olds who were seropositive for Epstein-Barr virus (EBV) at 2-years of age had a lower risk of persistent IgE-sensitization while EBV contraction after 2-years of age related to a higher risk of IgE-sensitization. Upon in vitro stimulation, NK cells from EBV+ 2-year olds produced lower IFN-g levels. EBV+ 2-year olds had also lower systemic IFN-g. In comparison to CD14++CD16- monocytes, CD14+CD16+ cells induced NK-cell IFN-g more potently in vitro, and EBV+ infants tended to have lower proportions of these CD14+CD16+ monocytes. This thesis highlights the importance of early-life microbial (EBV) exposure for a proper allergy-protective immunity. Also, maternal allergic heredity appears to influence monocytic microbial responses in early infancy. All these aspects relate to altered monocyte functionality, which suggest that they could have a role in allergic sensitization.
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MEKK-1 and NF-κB Signaling in Pancreatic Islet Cell DeathMokhtari, Dariush January 2008 (has links)
Type 1 diabetes is an autoimmune disease resulting in the selective destruction of the insulin producing β-cells in the pancreas. Pro-inflammatory cytokines and the free radical nitric oxide (NO) have been implicated in mediating the destruction of β-cells, possibly through activation of the mitogen activated protein kinases (MAPKs) JNK, ERK and p38. In addition to MAPKs, cytokine signaling also results in activation of the transcription factor nuclear factor-kappaB (NF-κB). The upstream signaling events leading to MAPK and NF-κB activation in β-cells are not well known. The work presented in this thesis therefore aims at characterizing the regulation of MAPKs and NF-κB in human islets, with emphasis on the role of the MAPK activator MAP/ERK kinase kinase-1 (MEKK-1) in islet cell death. It was found that MEKK-1 was phosphorylated in response to the nitric oxide donor DETA/NONOate (DETA/NO), the β-cell toxin streptozotocin (STZ) and pro-inflammatory cytokines and that MEKK-1 downstream signaling in response to the same treatments involved activation of JNK but not ERK and p38. MEKK-1 was also found to be essential for cytokine-induced NF-κB activation. MEKK-1 downregulation protected human islet cells from DETA/NO-, STZ, and cytokine-induced cell death. Furthermore, overexpression of the NF-κB subunit c-Rel protected human islet cells from STZ and hydrogen peroxide-induced cell death indicating that NF-κB activity protects against cell death in human islets. In summary, these results support an essential role for MEKK-1 in the activation of JNK and NF-κB, with important consequences for human islet cell death and that strategies preventing human islets death by inhibition of the JNK pathway instead of NF-κB might be suitable.
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