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Efeitos do decanoato de nandrolona na homeostasia glutamatérgica e no comportamento agressivoKalinine, Eduardo January 2014 (has links)
Nos últimos anos, houve um aumento significativo no uso abusivo dos Esteróides Anabólicos Andrógenos (EAAs). Um dos efeitos comportamentais mais marcantes da administração crônica de EAAs como o Decanoato de Nandrolona (DN) é a indução do comportamento agressivo exacerbado. Atualmente o sistema glutamatérgico tem sido associado ao comportamento agressivo induzido pelos EAAs, principalmente no que se refere à modulação dos receptores N-Methyl-D-Aspartato NMDA (NMDAr). Nós investigamos os efeitos centrais e periféricos da administração do DN ao longo do tempo (4, 11 e 19 dias consecutivos de administração), e a participação de mecanismos glutamatérgicos. Para isso, camundongos CF-1 tratados com DN foram avaliados em relação ao comportamento agressivo pelo teste do intruso. Além disso, investigamos a captação de glutamato, o imunoconteúdo de GLT-1, os níveis de glutamato no líquido extracelular, e a participação dos NMDAr na manifestação do comportamento agressivo. O fenótipo agressivo foi evidenciado somente no longo tempo de exposição à DN (19 dias). Na mesma janela temporal que os animais apresentaram o fenótipo agressivo houve redução significativa de captação de glutamato em fatias cerebrais de córtex e hipocampo, como também a redução do imunoconteúdo do transportador astrocitário GLT-1 nas mesmas estruturas cerebrais. A administração de antagonistas de NMDAr como MK-801 e memantina antes do teste do intruso diminuiu o comportamento agressivo dos animais tratados cronicamente com DN a níveis iguais aos do grupo controle. Ainda, o comportamento agressivo induzido pela administração crônica de DN diminuiu a remoção do glutamato da fenda sináptica, culminando com o aumento do glutamato extracelular no SNC, o que resultou na hiperexcitabilidade dos NMDAr. Este trabalho enfatiza o papel da comunicação entre astrócitos e neurônios e a relevância da hiperstimulação de NMDAr na manifestação do comportamento agressivo. / Nandrolone decanoate (ND), an anabolic androgenic steroid (AAS), induces an aggressive phenotype by mechanisms involving glutamate-induced N-methyl-d-aspartate receptor (NMDAr) hyperexcitability. The astrocytic glutamate transporters remove excessive glutamate surrounding the synapse. However, the impact of supraphysiological doses of ND on glutamate transporters activity remains elusive. We investigated whether ND-induced aggressive behavior is correlated with GLT-1 activity, glutamate levels and abnormal NMDAr responses. Two-month-old untreated male mice (CF1, n=20) were tested for baseline aggressive behavior in the resident-intruder test. Another group of mice (n=188) was injected with ND (15mg/kg) or vehicle for 4, 11 and 19 days (short-, mid- and long-term endpoints, respectively) and was evaluated in the resident-intruder test. Each endpoint was assessed for GLT-1 expression and glutamate uptake activity in the frontoparietal cortex and hippocampal tissues. Only the long-term ND endpoint significantly decreased the latency to first attack and increased the number of attacks, which was associated with decreased GLT-1 expression and glutamate uptake activity in both brain areas. These alterations may affect extracellular glutamate levels and receptor excitability. Resident males were assessed for hippocampal glutamate levels via microdialysis both prior to, and following, the introduction of intruders. Long-term ND mice displayed significant increases in the microdialysate glutamate levels only after exposure to intruders. A single intraperitoneal dose of NMDAr antagonists, memantine or MK-801, shortly before the intruder test, decreased aggressive behavior. In summary, long-term ND-induced aggressive behavior is associated with decreased extracellular glutamate clearance and NMDAr hyperexcitability, emphasizing the role of this receptor in mediating aggression mechanisms.
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Associação de polimorfismos em um único nucleotídeo nos genes GPX4,CYBB, CYBA, CAT e SLC2A2 e a susceptibilidade à doença renal crônica em coortes brasileira e francesas de portadores de diabetes mellitus tipo 1 / Association of single nucleotide polymorphisms in the genes GPX4, CYBB, CYBA, CAT e SLC2A2 and the susceptibility to chronic kidney disease in Brazilian and French cohorts of type 1 diabetes mellitus patientsThiago Andrade Patente 18 July 2014 (has links)
A nefropatia diabética (ND) é uma das principais causas de nefropatia crônica, o que torna o diabetes mellitus (DM) responsável por 44% da prevalência de doença renal crônica (DRC) no mundo. O papel do estresse oxidativo na patogênese da ND está bem estabelecido e genes pertencentes a vias pró- e antioxidantes são possíveis candidatos a conferirem susceptibilidade genética a essa e a outras complicações crônicas. Além do estresse oxidativo, o transporte intracelular de glicose, mediado por transportadores específicos, também parece exercer influência sobre a ND e outras complicações. O objetivo deste trabalho foi avaliar a associação entre ND e alguns polimorfismos de um único nucleotídeo (SNPs) em genes que codificam proteínas transportadoras de glicose (GLUT2 [SLC2A2]), proteínas pró-oxidantes (p22phox [CYBA] e NOX-2 [CYBB]) e proteínas antioxidantes (glutationa peroxidase-4 [GPX4] e catalase [CAT]) em uma coorte brasileira (n=453; 45,8% de pacientes com ND) e três coortes francesas (SURGENE [n=340; 17,7% de pacientes com ND na fase basal], GENEDIAB [n=313; 66,7% de pacientes com ND] e GENESIS [n=636; 49,7% de pacientes com ND]) de pacientes portadores de DM tipo 1. Os SNPs foram genotipados com o uso da técnica de reação em cadeia da polimerase (PCR) em tempo real e os resultados expressos em odds ratio (OR) ou hazard ratio (HR), com seus respectivos intervalos de confiança (IC), determinados em modelos ajustados de regressão logística politômica ou regressão de risco proporcional de Cox, respectivamente. A razão albumina/creatinina urinária (ACR) ou a taxa de excreção urinária de albumina (EUA) foram utilizadas para definir os estágios de ND e os pacientes foram classificados de acordo com a presença ou ausência de ND incipiente (ACR 30 - 300 mg/g de creatinina ou EUA 20 - 200 ?g/min ou 20 - 200 mg/L) e creatinina plasmática <1,7 mg/dL), ND estabilizada (ACR >300 mg/g de creatinina ou EUA > 200 ug/min ou > 200 mg/L e creatinina plasmática < 1,7 mg/dL ) ou ND avançada (ACR > 300 mg/g de creatinina ou EUA > 200 ug/min ou > 200 mg/L e creatinina plasmática > 1,7 mg/dL ou qualquer terapia de reposição renal) e também foram avaliadas associações dos SNPs com a taxa de filtração glomerular estimada (TFGe). O alelo raro A do SNP rs6610650 no gene CYBB foi associado com valores baixos de TFGe em mulheres na coorte brasileira e com a prevalência de ND estabilizada/avançada em mulheres da coorte francesa (OR 1,75; IC 95% 1,11 - 2,78; p=0,016). O alelo raro T do SNP rs713041 no gene GPX4 foi inversamente associado com a prevalência de ND estabilizada/avançada em homens na coorte brasileira (OR 0,30, IC95% 0,13 - 0,68, p=0,004) e com valores elevados de TFGe em homens na coorte francesa. O alelo raro A do SNP rs7947841 no gene CAT foi associado com a prevalência de ND incipiente (OR 2,79; IC95% 1,21 - 6,24; p=0,01) e ND estabilizada/avançada (OR 5,72; IC95% 1,62 - 22,03; p=0,007), bem como com a incidência de eventos renais, definidos como novos casos de microalbuminúria ou progressão para um estágio mais grave de ND durante o seguimento de estudo, na coorte SURGENE (HR 1,82; IC95% 1,13 - 2,81; p=0,01). O mesmo alelo de risco associou-se com a prevalência de ND incipiente (OR 3,13; IC95% 1,42 - 7,24; p=0,004) e com a incidência de insuficiência renal crônica terminal (IRCT) na coorte GENEDIAB (HR 2,11; IC95% 1,23 - 3,60; p=0,008) e com a prevalência de ND incipiente (OR 2,16; IC95% 1,14 - 4,10, p=0,02) e ND estabilizada/avançada (OR 2,71; IC95% 1,38 - 5,42; p=0,004) na coorte brasileira. O alelo raro T do SNP rs9932581 no gene CYBA foi inversamente associado com a prevalência de ND estabilizada/avançada (OR 0,60; IC95% 0,46 - 0,78; p=0,0001) e com valores mais baixos de TFGe nos pacientes de descendência europeia da coorte GENESIS/GENEDIAB. Este mesmo alelo foi associado com a incidência de eventos renais e de IRCT nas coortes SURGENE (HR 0,63; IC95% 0,46 - 0,86; p=0,003) e GENESIS/GENEDIAB (HR 0,51; IC95% 0,31 - 0,78; p=0,002), respectivamente. Entretanto estes resultados não foram replicados na coorte brasileira. O alelo raro T do SNP rs11924032 no gene SLC2A2 foi inversamente associado com a perda da TFGe ao logo do tempo (0,02%/ano vs 2,18%/ano para os pacientes portadores do genótipo GG; p=0,005), na coorte SURGENE. Este mesmo alelo foi inversamente associado com a incidência de IRCT nas coortes GENESIS/GENEDIAB (HR 0,53; IC95% 0,29 - 0,89; p=0,01). Os resultados observados para o gene SLC2A2 não forneceram fortes indícios para afirmarmos que este gene exerça um papel relevante no desenvolvimento da ND nos pacientes com DM tipo 1 nas coortes francesas estudadas. Em contrapartida, os SNPs nos genes que codificam as proteínas pró-oxidantes CYBA e CYBB e as proteínas antioxidantes GPX-4 e CAT foram capazes de modular o risco para doença renal em pacientes portadores de DM tipo 1, sendo que os SNPs presentes nos genes CYBB, GPX4 e CAT tiveram seus resultados replicados em coortes independentes, o que corrobora a importância destes genes e, consequentemente, do estresse oxidativo, na patogênese da ND / Diabetic nephropathy (DN) is a major cause of chronic nephropathy, with diabetes mellitus (DM) accounting for 44% of the prevalence of chronic kidney disease (CKD) in the world. The role of oxidative stress in the pathogenesis of DN is well established and genes belonging to pro- and antioxidant pathways are possible candidates to confer genetic susceptibility to this and other chronic complications. Besides oxidative stress, intracellular glucose transport mediated by specific transporters, also appears to influence DN and other complications. The aim of this study was to evaluate the association between DN and some single nucleotide polymorphisms (SNPs) present in genes encoding glucose transport proteins (GLUT2 [SLC2A2]), pro- (p22phox [CYBA] and NOX-2 [CYBB]) and antioxidants (glutathione peroxidase-4 [GPX4] and catalase [CAT]) proteins, in a Brazilian cohort [n= 453; 45.8% f patients with DN], and three French cohorts (SURGENE [n=340; 17.7% of patients with DN at baseline], GENEDIAB [n=313; 66.7% of patients with DN], and GENESIS [n=636; 49.7% of patients with DN]) of patients with type 1 DM. The SNPs were genotyped using the technique of real time polymerase chain reaction (PCR) and results expressed as odds ratio (OR) and hazard ratio (HR), with their respectively 95% confidence intervals (CI), determined by adjusted models of polytomic logistic regression and Cox proportional hazard regression, respectively. The albumin/creatinine ratio (ACR) or the urinary albumin excretion (UAE) rate were used to define the DN stages and the patients were classified according to the presence or absence of incipient DN (ACR 30 - 300 mg/g of creatinine or UAE 20 - 200 ug/min or 20 - 200 mg/L) and plasmatic creatinine < 1,7 mg/dL), established DN (ACR > 300 mg/g of creatinine or EUA > 200 ug/min or > 200 mg/L and plasmatic creatinine <1,7 mg/dL) or advanced DN (ACR >300 mg/g of creatinine or UAE > 200 ug/min or > 200 mg/L and plasmatic creatinine > 1,7 mg/dL or any renal replacement therapy). Associations for the estimated glomerular filtration rate (eGFR) were also evaluated. The rare allele A of the SNP rs6610650 in CYBB gene was associated with low values of eGFR in women in the Brazilian cohort and with the prevalence of established/advanced DN in women in the French cohort (OR 1.75, 95%CI 1.11 - 2.78, p=0.016). The rare allele T of the SNP rs713041 in GPX4 gene was inversely associated with the prevalence of established/advanced DN in men in the Brazilian cohort (OR 0.30, 95%CI 0.13 - 0.68, p=0.004) and with higher values of eGFR in men in the French cohort. The rare allele A of the SNP rs7947841 in CAT gene was associated with the prevalence of incipient DN (OR 2.79, 95%CI 1.21 - 6.24, p=0.01) and established/advanced DN (OR 5.72; 95%CI 1.62 - 22.03, p=0.007) as well as the incidence of renal events, defined as new cases of microalbuminuria or progression to a more severe stage during the follow-up study, in SURGENE cohort (HR 1.82, 95%CI 1.13 - 2.81, p=0.01). The same risk allele was associated with the prevalence of incipient DN (OR 3.13, 95%CI 1.42 - 7.24, p=0.004), the incidence of end-stage renal disease (ESRD) in the cohort GENEDIAB (HR 2.11, 95%CI 1.23 - 3.60, p=0.008) and with the prevalence of incipient DN (OR 2.16, 95%CI 1.14 - 4.10, p=0.02) and established/advanced DN (OR 2.71, 95%CI 1.38 - 5.42, p=0.004) in the Brazilian cohort. The rare T allele of the SNP rs9932581 in CYBA gene was inversely associated with the prevalence of established/advanced DN (OR: 0.60, 95%CI: 0.46 - .78, p=0.0001) and associated with lower values of eGFR in patients of GENESIS/GENEDIAB cohort. The same allele was inversely associated with the incidence of renal events and ESRD in SURGENE (HR 0.63, 95%CI 0.46 - 0.86, p=0.003) and GENESIS/GENEDIAB (HR 0.51, 95%CI 0.31 - 0.78, p=0.002) cohorts. However, these results were not replicated in the Brazilian cohort. The rare T allele of the SNP rs11924032 in SLC2A2 gene was inversely associated with the loss of eGFR during the follow-up (0.02%/year vs. 2.18%/year for patients with the GG genotype, p=0.005) in the SURGENE cohort. The same allele was inversely associated with the incidence of ESRD in the GENESIS/GENEDIAB cohorts (HR 0.53, 95%CI 0.29 - 0.89, p=0.01). The results observed for the SLC2A2 gene, in this study, did not provide strong evidence to state that this gene exerts a relevant role in the development of DN in patients with type 1 DM in the studied cohorts. However, SNPs in genes encoding the pro-oxidant proteins CYBA and CYBB, and the antioxidants proteins GPX-4 and CAT were able to modulate the risk of renal disease in patients with type 1 DM. The studied SNPs in CYBB, GPX4 and CAT genes had their results replicated in independent cohorts, which confirms the importance of these genes and, hence, of the oxidative stress in the pathogenesis of DN
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Efeitos do decanoato de nandrolona na homeostasia glutamatérgica e no comportamento agressivoKalinine, Eduardo January 2014 (has links)
Nos últimos anos, houve um aumento significativo no uso abusivo dos Esteróides Anabólicos Andrógenos (EAAs). Um dos efeitos comportamentais mais marcantes da administração crônica de EAAs como o Decanoato de Nandrolona (DN) é a indução do comportamento agressivo exacerbado. Atualmente o sistema glutamatérgico tem sido associado ao comportamento agressivo induzido pelos EAAs, principalmente no que se refere à modulação dos receptores N-Methyl-D-Aspartato NMDA (NMDAr). Nós investigamos os efeitos centrais e periféricos da administração do DN ao longo do tempo (4, 11 e 19 dias consecutivos de administração), e a participação de mecanismos glutamatérgicos. Para isso, camundongos CF-1 tratados com DN foram avaliados em relação ao comportamento agressivo pelo teste do intruso. Além disso, investigamos a captação de glutamato, o imunoconteúdo de GLT-1, os níveis de glutamato no líquido extracelular, e a participação dos NMDAr na manifestação do comportamento agressivo. O fenótipo agressivo foi evidenciado somente no longo tempo de exposição à DN (19 dias). Na mesma janela temporal que os animais apresentaram o fenótipo agressivo houve redução significativa de captação de glutamato em fatias cerebrais de córtex e hipocampo, como também a redução do imunoconteúdo do transportador astrocitário GLT-1 nas mesmas estruturas cerebrais. A administração de antagonistas de NMDAr como MK-801 e memantina antes do teste do intruso diminuiu o comportamento agressivo dos animais tratados cronicamente com DN a níveis iguais aos do grupo controle. Ainda, o comportamento agressivo induzido pela administração crônica de DN diminuiu a remoção do glutamato da fenda sináptica, culminando com o aumento do glutamato extracelular no SNC, o que resultou na hiperexcitabilidade dos NMDAr. Este trabalho enfatiza o papel da comunicação entre astrócitos e neurônios e a relevância da hiperstimulação de NMDAr na manifestação do comportamento agressivo. / Nandrolone decanoate (ND), an anabolic androgenic steroid (AAS), induces an aggressive phenotype by mechanisms involving glutamate-induced N-methyl-d-aspartate receptor (NMDAr) hyperexcitability. The astrocytic glutamate transporters remove excessive glutamate surrounding the synapse. However, the impact of supraphysiological doses of ND on glutamate transporters activity remains elusive. We investigated whether ND-induced aggressive behavior is correlated with GLT-1 activity, glutamate levels and abnormal NMDAr responses. Two-month-old untreated male mice (CF1, n=20) were tested for baseline aggressive behavior in the resident-intruder test. Another group of mice (n=188) was injected with ND (15mg/kg) or vehicle for 4, 11 and 19 days (short-, mid- and long-term endpoints, respectively) and was evaluated in the resident-intruder test. Each endpoint was assessed for GLT-1 expression and glutamate uptake activity in the frontoparietal cortex and hippocampal tissues. Only the long-term ND endpoint significantly decreased the latency to first attack and increased the number of attacks, which was associated with decreased GLT-1 expression and glutamate uptake activity in both brain areas. These alterations may affect extracellular glutamate levels and receptor excitability. Resident males were assessed for hippocampal glutamate levels via microdialysis both prior to, and following, the introduction of intruders. Long-term ND mice displayed significant increases in the microdialysate glutamate levels only after exposure to intruders. A single intraperitoneal dose of NMDAr antagonists, memantine or MK-801, shortly before the intruder test, decreased aggressive behavior. In summary, long-term ND-induced aggressive behavior is associated with decreased extracellular glutamate clearance and NMDAr hyperexcitability, emphasizing the role of this receptor in mediating aggression mechanisms.
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O SP1 (transcription factor Sp1) participa da regulação transcricional do Slc2a4 mediada pelo receptor de estrógeno ER-alfa em adipócitos 3T3-L1 / SP1 (transcription factor Sp1) participates in the transcriptional regulation of Slc2a4 mediated by estrogen receptor ER-alpha in 3T3-L1 adipocytesJoão Nilton Barreto Andrade 15 May 2018 (has links)
O diabetes mellitus tipo 2 (DM2) é caracterizado pela presença de resistência à insulina, a qual pode ser modulada pelo estrógeno, tanto em fêmeas como em machos. Nesse processo, o transportador de glicose GLUT4 (gene Slc2a4, solute carrier family 2 member 4) desempenha papel importante, pois aumento da expressão do GLUT4 melhora o controle glicêmico. Estradiol (E2) regula a expressão do Slc2a4 por meio do balanço dos efeitos contrários de seus receptores (ERs): ER-alfa estimula e ER-beta inibe a expressão. Efeitos transcricionais dos ERs envolvem a participação de co-reguladores, destacadamente o SP1 (transcription factor Sp1), potente estimulador do Slc2a4. Entretanto, o papel do SP1 na regulação do Slc2a4 mediada pelos ERs é desconhecido; e este foi o objetivo do presente estudo. Investigou-se adipócitos maduros 3T3-L1, tratados por 24 horas com E2, agonista de ER-alfa (PPT) ou agonista de ER-beta (DPN). Avaliou-se: a expressão gênica (RT-qPCR) de Slc2a4 e Sp1; o conteúdo (Western blotting) total de GLUT4 e o nuclear de ER-alfa/beta e SP1; a atividade de ligação do SP1 no Slc2a4 (ensaio de mobilidade eletroforética); e a formação de complexos SP1/ER-alfa (imunoprecipitação). Os resultados confirmaram que E2 aumenta a expressão de Slc2a4/GLUT4 pela ação preponderante do ER-alfa. O agonista PPT aumentou: o conteúdo nuclear de SP1, a interação SP1/ER-alfa e a atividade de ligação do SP1 no Slc2a4. O agonista DPN indicou que a ação repressora do ER-beta não envolve o SP1. Conclui-se que o efeito estimulador do ER-alfa na expressão do Slc2a4 envolve mecanismo de transativação gênica via SP1. Essas observações colocam a cooperação ER-alfa/SP1 como um novo alvo para o desenvolvimento de medidas terapêuticas para resistência à insulina e diabetes mellitus tipo 2 / Type 2 diabetes mellitus (T2DM) is characterized by insulin resistance, which can be modulated by estrogen in both females and males. In this process, the glucose transporter GLUT4 (solute carrier family 2 member 4 gene - Slc2a4) plays an important role, since increasing GLUT4 expression improves glycemic control. Estradiol (E2) regulates the expression of Slc2a4, by a mechanism in which estrogen receptors (ERs) play opposite effects: ER-alpha stimulates, whereas ER-beta inhibits the expression. Transcriptional effects of ERs involve co-regulators, notably the transcription factor SP1, a powerful enhancer of Slc2a4. However, the role of SP1 in the ERs-mediated regulation of Slc2a4 is unknown; and that was the aim of the present study. Differentiated adipocytes 3T3-L1 were treated (24 hours) with E2, ER-alpha agonist (PPT) or ER-beta agonist (DPN). It was analyzed: gene expression (RT-qPCR) of Slc2a4 and Sp1; total content o GLUT4 and nuclear content of ER-alpha/beta and SP1 (Western blotting); binding activity of SP1 into Slc2a4 promoter (electrophoretic mobility shift assay); and content of nuclear SP1/ER-alpha complexes (immunoprecipitation). Results confirmed that E2 increases the expression of Slc2a4/GLUT4, by the dominant effect of ER-alpha. The ER-alpha agonist PPT increased the nuclear content of SP1, the interaction of SP1/ER-alpha, and the binding activity of SP1 into the Slc2a4. The agonist DPN evinced that ER-beta activity does not involve the SP1. In conclusion, the enhancer effect of ER-alpha upon Slc2a4 gene expression involves a transactivation mechanism via SP1. This observation point outs the cooperation of ER-alpha/SP1 as a new target for the development of approaches to treat insulin resistance and T2DM
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Análise do metabolismo de polifosfato e do operon pst em Pseudomonas aeruginosa. / Analysis of the metabolism of polyphosphate and of the pst operon in Pseudomonas aeruginosa.Nicolas Federico Villamil Munevar 06 August 2015 (has links)
O operon pst de P. aeruginosa codifica um transportador de fosfato de alta afinida-de e também a proteína PhoU que, em conjunto, atuam como repressores da ex-pressão do regulon Pho dessa espécie. A atividade de PhoU está também associada ao metabolismo de polifosfato (poliP), dado que mutantes phoU nulos apresentam um vasto acúmulo do biopolímero. Ensaios de β-galactosidase mostraram uma alteração na expressão dos genes ppk e ppx, envolvidos no metabolismo de poliP, no mutante phoU. Observou-se que na cepa selvagem, a transcrição de ppk e de ppx não responde às limitações de Pi ou de nitrogênio, sendo esses genes altamente expressos em condições normais de crescimento. Além disso, determinou-se que ppk é co-transcrito com o gene hemB, os quais formam, portanto, um operon. O operon pst também foi analisado. Foi identificado por ensaios de northern blot o transcrito do primeiro gene do operon, pstS, que codifica uma proteína periplasmática. Também, foi identificado um promotor imediatamente a montante de phoU, o gene mais distal do operon, que permitiria sua expressão em condições normais do crescimento bacteriano. Por fim, determinou-se por ensaios de EMSA que as duas sequências consenso Pho box presentes no operon pst são completamente funcionais. / The pst operon in P. aeruginosa encodes a high-affinity phosphate transporter and the PhoU protein, which together act as repressors of Pho regulon of this species. The PhoU activity is also related with polyphosphate (polyP) metabolism, since phoU null mutants have a large accumulation of the biopolymer. β-galactosidase assays allowed to confirm a change in the expression of ppk and ppx genes, in-volved in PolyP metabolism, in the phoU mutant. It was also evidenced that in the wild type strain, the ppk and ppx transcription does not respond to Pi or nitrogen starvation, and that these genes are highly expressed under conditions of normal growth. In addition, it was determined that ppk is co-transcribed with hemB, a gene involved in the synthesis of porphyrins, and they constitute therefore an operon. The pst operon was also examined. Was identified by northern blot the transcript of the first gene in the operon, pstS, which encodes a periplasmic protein. Also, a promoter was identified immediately upstream of phoU, the most distal gene in the operon, allowing its expression in normal conditions of bacterial growth. Finally, it was determined by EMSA that the two consensus sequences Pho box present in the pst operon are fully functional.
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Os hormônios tireoideanos e o desenvolvimento esquelético fetal e pós-natal: estudo do padrão de expressão dos transportadores e das selenodesiodases das iodotironinas. / Thyroid hormone and skeletal development at fetal and postnatal ages: the expression pattern of iodothyronine transporters and deiodinases.Luciane Portas Capelo 09 February 2009 (has links)
Ainda não é claro o papel dos hormônios tireoideanos (HT) no desenvolvimento do esqueleto fetal. Para responder a questão, induzimos hipotireoidismo materno e fetal em camundongos prenhes através da administração de metimazol e perclorato de sódio. O esqueleto fetal apresentou discretas morfológicas até 16,5 dias de idade embrionária (E). Apenas no final da gestação, em 18,5E, foram observadas a redução significativa da zona hipertrófica, do número de condrócitos hipertróficos, desorganização e diminuição da quantidade dos condrócitos proliferativos, além da redução da expressão do colágeno I, X e osteocalcina. Os TRs, assim como LAT1, LAT2 e MCT8 foram detectados em todas as idades estudadas. A alta expressão gênica da D3, principal inativadora do hormônio tireoideano, em 14,5E e sua redução significativa durante o desenvolvimento, até atingir níveis indetectáveis no período pós-natal indicam que a D3 seja responsável por manter baixos níveis de HT no esqueletono início da gestação, garantindo um desenvolvimento ósseo normal. / Thyroid hormone (TH) plays a key role on post-natal bone development and metabolism, while its relevance during fetal bone development is uncertain. To study this, pregnant mice and fetuses were made hypothyroid. The skeleton morphology was preserved up to 16.5 embryonic days (E). Only at E18.5, the hypothyroid fetuses exhibited a reduction in femoral type I and type X collagen and osteocalcin mRNA levels, in the length and area of the proliferative and hypertrofic zones, in the number of chondrocytes per proliferative column, and in the number of hypertrophic chondrocytes. This suggests that up to E16.5, thyroid hormone signaling in bone is kept to a minimum. D3 mRNA was readily detected as early as E14.5 and its expression decreased markedly at E18.5, and even more after birth. The expression levels of D3 gene during early bone development along with the absence of a hypothyroidism-induced bone phenotype at this time suggest that its expression keeps thyroid hormone signaling in bone to very low levels at this early stage of bone development.
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Two newly defined inherited disorders due to cholinergic transporter dysfunction with distinct clinical outcomes, disease mechanisms and modes of inheritanceBarwick, Katy Elizabeth Sara January 2016 (has links)
Neurodegenerative diseases are becoming increasingly prevalent due to the ageing population, and are among the major contributors to disability and disease worldwide. The identification of the gene defects responsible for many of these conditions has played a major role in our understanding of the pathogenic processes involved, and provided opportunity to develop targeted treatment strategies. Cholinergic neurotransmission supports a wide range of physiological and behavioural processes and its dysfunction of cholinergic signalling has been associated with a number of disorders, including myasthenias, cardiovascular disease(1), attention-deficit hyperactivity disorder (ADHD) (2), Alzheimer’s disease (ADi), schizophrenia, addiction(3), and depression(4). SLC5A7 encodes the Na+/Cl- dependent, high-affinity choline transporter (CHT) which represents the rate limiting step in acetylcholine (Ach) synthesis and is critical for normal cholinergic signalling. The work in this thesis details two new inherited disorders, caused by distinct pathogenic disease mechanisms, associated with novel SLC5A7 mutations. Chapter three documents the discovery of two autosomal-dominantly acting SLC5A7/CHT mutations associated with adult onset motor neurone disorders. Initially we identified a frameshift mutation that results in premature truncation of the transporter protein in a large Welsh kindred affected with distal hereditary motor neuropathy type VII (dHMN-VII), in which neurodegeneration and muscle paresis is largely restricted to the distal limb muscles and vocal cords. The mutation responsible results in the dominant-negative interference of the mutant molecule with function of the wild type choline transporter, resulting in significantly reduced (although not completely abolished) transporter activity. This finding is further evidenced by the discovery of a second dHMN family associated with a distinct frameshift SLC5A7 mutation indicative of a similar dominant-negative disease mechanism. Together these findings corroborate a dominant-negative disease mechanism arising from C-terminal truncating SLC5A7 mutations associated with dHMN, and provide further insight into the role of aberrant choline transporter function in neurological disease. Chapter four describes N-terminal missense mutations located in the transmembrane spanning region of SLC5A7/CHT, associated with a severe infantile neuromuscular disorder characterised by predominantly central hypotonia and developmental delay. The phenotypic effects of these mutations are likely to result from the near abolition of CHT-mediated choline transport in homozygous individuals, and are in keeping with those observed in CHT knock-out mouse models(5). The development of a mouse model of the human motor neurone disease arising from SLC5A7 frameshift mutations should allow for further investigation of the mechanism by which truncated CHT leads to the dHMN phenotype. Chapter 5 details treatment hypotheses for dHMN, as well as the generation of a patient-specific knock-in mouse model carrying an Slc5a7 mutation orthologous to that identified in dHMN-VII families in chapter 3, and results from preliminary neurological phenotyping of the mouse model. This model will be crucially important for the exploration of treatment options in dHMN-VII motor neurone disease as a prelude to clinical trials in humans.
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Utilisation du modèle levure pour la recherche de voies thérapeutiques contre le syndrome de Barth / Exploration of potential therapeutic pathways against the Barth syndrome using yeast as a modelDe Taffin de Tilques, Maxence 15 December 2017 (has links)
Les cardiolipines (CL) sont des phospholipides possédant de nombreux rôles dans la structure et le fonctionnement des mitochondries. Elles sont, par exemple, impliquées dans la stabilisation des complexes des oxydations phosphorylantes, la fusion/fission des membranes mitochondriales, l’import de protéines mitochondriales, la biogénèse des centres fer-soufre (Fe-S), l’apoptose, la protection des mitochondries contre le stress oxydatif…L’ensemble de ces fonctions nécessitent que les chaînes d’acides gras de la CL soient majoritairement insaturées. Le maintien de cette composition en chaînes insaturées requiert une activité acyltransférase portée par la protéine tafazzine, qui est codée par le gène nucléaire TAZ. Des mutations dans ce gène sont la cause du syndrome de Barth (BTHS), qui se caractérise notamment par des myopathies cardiaques et squelettiques, une neutropénie (responsable de nombreuses infections) et des défauts de la chaîne respiratoire. Malgré des progrès considérables dans la compréhension des mécanismes conduisant à la pathogénicité, il n’existe toujours aucune thérapie pour traiter cette maladie. Nous avons donc utilisé la levure Saccharomyces cerevisiae, chez qui la voie de remodelage des CL par la tafazzine est bien conservée, pour modéliser le BTHS et, ainsi non seulement étudier les mécanismes moléculaires sous-jacents de cette maladie, mais aussi identifier différentes voies thérapeutiques potentielles (suppresseurs génétiques et molécules pharmacologiques). Nous avons tout d’abord construit une levure délétée pour le gène orthologue TAZ (TAZ1 chez la levure), la souche Δtaz1. En accord avec des études précédentes, la souche Δtaz1 présente une diminution quantitative de la CL accompagnée d’un changement qualitatif des chaînes d’acides gras1,2 (plus d’acides gras saturés et moins d’insaturés). Nous montrons aussi que cette levure mutante a un défaut de croissance en milieu respiratoire à température élevée (36°C) ainsi que des défauts dans plusieurs composants impliqués dans les oxydations phosphorylantes2. De façon intéressante, alors que le défaut primaire (diminution des CL et changement qualitatif des chaines d’acide gras) est toujours présent, nous montrons que les oxydations phosphorylantes sont restaurées dans la souche Δtaz1 surexprimant Odc1p2, un transporteur mitochondrial d’intermédiaires du cycle de Krebs, ou par plusieurs composés chimiques. Plusieurs de ces drogues sauvant le mutant, dont la cycloheximide, sont des inhibiteurs partiels de la synthèse protéique cytosolique. Cet effet a été confirmé génétiquement par des mutations affectant les ribosomes cytosoliques. L’ensemble des résultats suggère qu’un défaut au niveau des CL provoquerait un stress protéostatique probablement impliqué dans le processus pathologique. / The phospholipid cardiolipin (CL) has many roles in mitochondrial structure and function, ranging from assembly/stability and functioning of the oxidative phosphorylation (OXPHOS) system, fusion and fission of mitochondrial membranes, mitochondrial protein import, iron-sulfur (Fe-S) biogenesis, apoptosis, and protection of mitochondria against oxidative damage. The maintenance of a proper unsaturated acyl chain composition of CL involves the acyltransferase tafazzin in which mutations cause Barth syndrome (BTHS), resulting in cardiac and skeletal myopathy, cyclic neutropenia and respiratory chain defects. Despite considerable progress in the understanding of the underlying pathogenic mechanisms, there are still no effective therapies to treat this disease. We are using the yeast Saccharomyces cerevisiae, in which the tafazzin-based cardiolipin remodeling pathway is conserved, as a model system for the exploration of potential therapeutic pathways against BTHS, by way of genetic suppressors and chemical screening. We first constructed a yeast strain lacking the orthologous taffazin gene (Δtaz1). Consistent with previous studies, our Δtaz1 yeast failed to grow on non-fermentable carbon sources at elevated temperatures (36°C) and exhibited defects in several components of the mitochondrial respiratory system. Interestingly, we found that oxidative phosphorylation was fully restored in Δtaz1 yeast by overexpressing Odc1p [1]-a mitochondrial carrier that transports Krebs cycle intermediates- and by a number of chemical compounds. Some of the rescuing drugs, especially cycloheximide, act by partially inhibiting cytosolic protein synthesis leading to a full recovery of oxidative phosphorylations. Our findings identify potential cellular components and pathways for the pharmacological treatment of BTHS patients.
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Pharmacologie de la morphine chez les sujets obèses avant et après chirurgie de l'obésité / Pharmacology of morphine in obese subjects before and after obesity surgeryLloret Linares, Célia 19 April 2013 (has links)
Au cours de cette thèse, nous montrons que l’obésité est un facteur de variabilité pharmacodynamique et pharmacocinétique de la morphine. En particulier, l’absorption et l’exposition à la morphine orale augmentent de façon significative après chirurgie de type bypass gastrique. Nous démontrons le rôle du contenu entérocytaire en transporteur d’efflux P-gp, dans la détermination de l’absorption et de l’exposition à la morphine. / In this thesis, we show that obesity is a factor of pharmacodynamic and pharmacokinetic morphine variability. In particular, absorption and exposure to oral morphine increases significantly after gastric bypass surgery . We demonstrate the role of enterocyte content of efflux transporter P-gp in determining the absorption and exposure to morphine.
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Conception de faux substrats fluorescents (FFS) dans le cadre de l’étude du transporteur vésiculaire de nucléotides et de la Sialine / Design of fluorescent false substrates (FFS) to study vesicular nucleotide transporter and SialinDubois, Lilian 15 November 2013 (has links)
Le concept de composés appelés FFS, pour faux substrats fluorescents (ou FFN pour les neurotransmetteurs), a été introduit par le groupe du Dr Sames qui a conçu et optimisé des molécules fluorescentes reconnues comme substrats par le Transporteur Vésiculaire de Monoamine (VMAT2). Ces composés, une fois accumulés dans des vésicules synaptiques, ont permis la visualisation de l’activité neuronale monoaminergique en temps réel. Ce concept a servi d’hypothèse pour ce travail de thèse. En effet, nous avons conçu, synthétisé et évalué la potentialité de deux familles chimiques comme substrats fluorescents de transporteurs de la famille SLC17 : VNUT (transporteur vésiculaire de nucléotides) et la Sialine (transporteur d’acide sialique). Les molécules fluorescentes synthétisées devront être capables de remplacer/mimer les substrats naturels de VNUT et de la Sialine (respectivement l’ATP et le Neu-5-Ac) et de couvrir une large gamme de longueurs d’ondes d’émission pour nous adapter aux problématiques biologiques. L’élaboration de tels composés a été effectuée par conception rationnelle en synergie avec les résultats des tests d’inhibition et de transport et à partir de touches issues du criblage virtuel. Deux composés ont été plus particulièrement étudiés. D’une part, l’ATP a été modifiée en remplaçant le motif adénine par un fluorophore (éthéno, coumarines, quinoléines…). D’autre part, une touche virtuelle (Fmoc-Lys(Cbz)-OH) issue d’un vHTS sur la Sialine a été sélectionnée pour sa structure facilement modifiable, qui a permis l’incorporation aisée de motifs fluorescents. Une cinquantaine de composés a donc été synthétisée et évaluée pour leur capacité d’inhibition ou de substrat sur les cibles sélectionnées. Les résultats prometteurs de plusieurs composés en tant qu’inhibiteur laissent de nombreuses perspectives pour la compréhension de la machinerie vésiculaire. / The concept of compounds called FFSs for false fluorescent substrates (or FFNs for neurotransmitters) was introduced by the group of Dr Sames who designed and optimized fluorescent molecules recognized as substrates by the Vesicular Monoamine Transporter (VMAT2). Once accumulated in synaptic vesicules, these compounds have allowed visualization of the monoaminergic neuronal activity in real time. This concept has been used as hypothesis for this thesis work. Indeed, we have designed, synthesized and evaluated the potential of two chemical families as fluorescent substrates of SLC17 transporter family: VNUT (Vesicular Nucleotide Transporter) and Sialin (sialic acid transporter). The synthesized fluorescent molecules must be able to replace/mimic the natural substrates of VNUT and Sialin ( ATP and Neu-5-Ac, respectively) and to cover a wide range of emission wavelengths to deal with biological problems. The development of such compounds was performed by rational design in synergy with the results of inhibition and transport tests and by virtual screening. Two compounds have been specifically studied. On one hand, ATP was modified by replacing the adenine pattern by a fluorophore (etheno, coumarins, quinolines…). On the other hand, a virtual hit (Fmoc-Lys(Cbz)-OH), derived from vHTS targeted to Sialin, was selected for the ease to incorporate fluorescent patterns. Therefore, fifty compounds were synthesized and evaluated for their inhibitory or substrate ability on selected targets. The promising results of several compounds as inhibitors give rise to perspectives for understanding vesicular machinery.
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