959 resultados para Phase 1 xenobiotic-metabolizing gene Cyp2a5
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Virtually every mammalian cell, including cardiomyocytes, possesses an intrinsic circadian clock. The role of this transcriptionally based molecular mechanism in cardiovascular biology is poorly understood. We hypothesized that the circadian clock within the cardiomyocyte influences diurnal variations in myocardial biology. We, therefore, generated a cardiomyocyte-specific circadian clock mutant (CCM) mouse to test this hypothesis. At 12 wk of age, CCM mice exhibit normal myocardial contractile function in vivo, as assessed by echocardiography. Radiotelemetry studies reveal attenuation of heart rate diurnal variations and bradycardia in CCM mice (in the absence of conduction system abnormalities). Reduced heart rate persisted in CCM hearts perfused ex vivo in the working mode, highlighting the intrinsic nature of this phenotype. Wild-type, but not CCM, hearts exhibited a marked diurnal variation in responsiveness to an elevation in workload (80 mmHg plus 1 mu M epinephrine) ex vivo, with a greater increase in cardiac power and efficiency during the dark (active) phase vs. the light (inactive) phase. Moreover, myocardial oxygen consumption and fatty acid oxidation rates were increased, whereas cardiac efficiency was decreased, in CCM hearts. These observations were associated with no alterations in mitochondrial content or structure and modest mitochondrial dysfunction in CCM hearts. Gene expression microarray analysis identified 548 and 176 genes in atria and ventricles, respectively, whose normal diurnal expression patterns were altered in CCM mice. These studies suggest that the cardiomyocyte circadian clock influences myocardial contractile function, metabolism, and gene expression.
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Several noncoding microRNAs (miR or miRNA) have been shown to regulate the expression of drug-metabolizing enzymes and transporters. Xenobiotic drug-induced changes in enzyme and transporter expression may be associated with the alteration of miRNA expression. Therefore, this study investigated the impact of 19 xenobiotic drugs (e. g. dexamethasone, vinblastine, bilobalide and cocaine) on the expression of ten miRNAs (miR-18a, -27a, -27b, -124a, -148a, -324-3p, -328, -451, -519c and -1291) in MCF-7, Caco-2, SH-SY5Y and BE(2)-M17 cell systems. The data revealed that miRNAs were differentially expressed in human cell lines and the change in miRNA expression was dependent on the drug, as well as the type of cells investigated. Notably, treatment with bilobalide led to a 10-fold increase of miR-27a and a 2-fold decrease of miR-148a in Caco-2 cells, but no change of miR-27a and a 2-fold increase of miR-148a in MCF-7 cells. Neuronal miR-124a was generally down-regulated by psychoactive drugs (e. g. cocaine, methadone and fluoxetine) in BE(2)-M17 and SH-SY5Y cells. Dexamethasone and vinblastine, inducers of drug-metabolizing enzymes and transporters, suppressed the expression of miR-27b, -148a and -451 that down-regulate the enzymes and transporters. These findings should provide increased understanding of the altered gene expression underlying drug disposition, multidrug resistance, drug-drug interactions and neuroplasticity. Copyright (C) 2011 John Wiley & Sons, Ltd.
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Energy balance is maintained by controlling both energy intake and energy expenditure. Thyroid hormones play a crucial role in regulating energy expenditure. Their levels are adjusted by a tight feed back-control led regulation of thyroid hormone production/incretion and by their hepatic metabolism. Thyroid hormone degradation has previously been shown to be enhanced by treatment with phenobarbital or other antiepileptic drugs due to a CAR-dependent induction of phase 11 enzymes of xenobiotic metabolism. We have recently shown, that PPAR alpha agonists synergize with phenobarbital to induce another prototypical CAR target gene, CYP2B1. Therefore, it was tested whether a PPAR alpha agonist could enhance the phenobarbital-dependent acceleration of thyroid hormone elimination. In primary cultures of rat hepatocytes the apparent half-life of T3 was reduced after induction with a combination of phenobarbital and the PPARa agonist WY14643 to a larger extent than after induction with either Compound alone. The synergistic reduction of the half-life could be attributed to a synergistic induction of CAR and the CAR target genes that code for enzymes and transporters involved in the hepatic elimination of T3, such as OATP1A1, OATP1A3, UGT1A3 and UCT1A10. The PPAR alpha-dependent CAR induction and the subsequent induction of T3-eliminating enzymes might be of physiological significance for the fasting-incluced reduction in energy expenditure by fatty acids as natural PPARa ligands. The synergism of the PPAR alpha agonist WY14643 and phenobarbital in inducing thyroid hormone breakdown might serve as a paradigm for the synergistic disruption of endocrine control by other combinations of xenobiotics. (C) 2009 Elsevier Inc. All rights reserved.
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We hypothesize that, in kidney of diabetic rats, hepatocyte nuclear factors (HNF-1 alpha. and HNF-3 beta) play a critical role in the overexpression of solute carrier 2A2 (SLC2A2) gene. Diabetic rats submitted or not to rapid (up to 12 h) and short-term (1, 4 and 6 days) insulin treatment were investigated. Twofold increase in GLUT2 mRNA was observed in diabetic, accompanied by significant increases in HNF-1 alpha and HNF-3 beta expression and binding activity. Additional 2-fold increase in GLUT2 mRNA and HNF-3 beta expression/activity was observed in 12-h insulin-treated rats. Six-day insulin treatment decreased GLUT2 mRNA and HNF-1 alpha expression and activity to levels of non-diabetic rats, whereas HNF-3 beta decreased to levels of non-insulin-treated diabetic rats. Our results provide evidence for a link between the overexpression of SLC2A2 gene and the transcriptional activity of HNF-1 alpha and HNF-3 beta in kidney of diabetic rats. Furthermore, recovery of SLC2A2 gene after 6-day insulin treatment also involves HNF-1 alpha and HNF-3 beta activity. (C) 2009 Elsevier Ireland Ltd. All rights reserved.
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The physical properties of the La(0.6)Y(0.1)Ca(0.3)MnO(3) compound have been investigated, focusing on the magnetoresistance phenomenon studied by both dc and ac electrical transport measurements. X-ray diffraction and scanning electron microscopy analysis of ceramic samples prepared by the sol-gel method revealed that specimens are single phase and have average grain size of similar to 0.5 mu m. Magnetization and 4-probe dc electrical resistivity rho(T,H) experiments showed that a ferromagnetic transition at T(C) similar to 170 K is closely related to a metal-insulator (MI) transition occurring at essentially the same temperature T(MI). The magnetoresistance effect was found to be more pronounced at low applied fields (H <= 2.5 T) and temperatures close to the MI transition. The ac electrical transport was investigated by impedance spectroscopy Z(f,T,H) under applied magnetic field H up to 1 T. The Z(f,T,H) data exhibited two well-defined relaxation processes that exhibit different behaviors depending on the temperature and applied magnetic field. Pronounced effects were observed close to T (C) and were associated with the coexistence of clusters with different electronic and magnetic properties. In addition, the appreciable decrease of the electrical permittivity epsilon`(T,H) is consistent with changes in the concentration of e(g) mobile holes, a feature much more pronounced close to T (C).
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Perovskite-structured Ba(0.90)Ca(0.10)(Ti(1-x)Zr(x))O(3) ceramics were prepared in this work and subsequently studied in terms of composition-dependent dielectric and high-resolution long-range order structural properties from 30 to 450 K. The dielectric response of these materials was measured at several frequencies in the range from 1 kHz to 1 MHz. Combining both techniques, including Rietveld refinement of the X-ray diffraction data, allowed observing that, when increasing Zr(4+) content, the materials change from conventional to diffuse and relaxor ferroelectric compounds, the transition occurring spontaneously at the x = 0.18 composition. Interestingly, this spontaneous transition turned out to be prevented for a further increase of Zr(4+). On the basis of all the dielectric and structural results processed, a phase diagram of this system is presented. (C) 2010 WILEY-VCH Verlag GmbH & Co. KGaA, Weinheim
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The spectral properties and phase diagram of the exactly integrable spin-1 quantum chain introduced by Alcaraz and Bariev are presented. The model has a U(1) symmetry and its integrability is associated with an unknown R-matrix whose dependence on the spectral parameters is not of a different form. The associated Bethe ansatz equations that fix the eigenspectra are distinct from those associated with other known integrable spin models. The model has a free parameter t(p). We show that at the special point t(p) = 1, the model acquires an extra U(1) symmetry and reduces to the deformed SU(3) Perk-Schultz model at a special value of its anisotropy q = exp(i2 pi/3) and in the presence of an external magnetic field. Our analysis is carried out either by solving the associated Bethe ansatz equations or by direct diagonalization of the quantum Hamiltonian for small lattice sizes. The phase diagram is calculated by exploring the consequences of conformal invariance on the finite-size corrections of the Hamiltonian eigenspectrum. The model exhibits a critical phase ruled by the c = 1 conformal field theory separated from a massive phase by first-order phase transitions.
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Polycrystalline La(0.86)Sr(0.14)Mn(1-x)Cu(x)O(3+delta) (x = 0, 0.05, 0.10, 0.15, 0.20) manganites were investigated by means of magnetic measurements and zero-field (139)La and (55)Mn nuclear magnetic resonance (NMR) spectroscopy. Magnetization versus temperature measurements revealed a paramagnetic to ferromagnetic transition in most samples, with lower Curie temperatures and broader transitions for samples with higher Cu contents. The details of the magnetization measurements suggested a phase-separated scenario, with ferromagnetic clusters embedded in an antiferromagnetic matrix, especially for the samples with large Cu contents (x = 0.15 and 0.20). Zero-field (139)La NMR measurements confirmed this finding, since the spectral features remained almost unchanged for all Cu-doped samples, whereas the bulk magnetization was drastically reduced with increasing Cu content. (55)Mn NMR spectra were again typical of ferromagnetic regions, with a broadening of the resonance line caused by the disorder introduced by the Cu doping. The results indicate a coexistence of different magnetic phases in the manganites studied, with the addition of Cu contributing to the weakening of the double-exchange interaction in most parts of the material.
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The Blastocladiella emersonii life cycle presents a number of drastic biochemical and morphological changes, mainly during two cell differentiation stages: germination and sporulation. To investigate the transcriptional changes taking place during the sporulation phase, which culminates with the production of the zoospores, motile cells responsible for the dispersal of the fungus, microarray experiments were performed. Among the 3,773 distinct genes investigated, a total of 1,207 were classified as differentially expressed, relative to time zero of sporulation, at at least one of the time points analyzed. These results indicate that accurate transcriptional control takes place during sporulation, as well as indicating the necessity for distinct molecular functions throughout this differentiation process. The main functional categories overrepresented among upregulated genes were those involving the microtubule, the cytoskeleton, signal transduction involving Ca(2+), and chromosome organization. On the other hand, protein biosynthesis, central carbon metabolism, and protein degradation were the most represented functional categories among downregulated genes. Gene expression changes were also analyzed in cells sporulating in the presence of subinhibitory concentrations of glucose or tryptophan. Data obtained revealed overexpression of microtubule and cytoskeleton transcripts in the presence of glucose, probably causing the shape and motility problems observed in the zoospores produced under this condition. In contrast, the presence of tryptophan during sporulation led to upregulation of genes involved in oxidative stress, proteolysis, and protein folding. These results indicate that distinct physiological pathways are involved in the inhibition of sporulation due to these two classes of nutrient sources.
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Análises de complementação do mutante pso9-1, sensível a psoralenos mono- e bifuncionais fotoativados, UV254nm e nitrosoguanidina, com os mutantes pso1 a pso8, confirmou que este contém uma nova mutação pso. A clonagem molecular a partir de um banco genômico de levedura sugeriu pso9-1 como alelo mutante do gene de checkpoint que responde a danos no DNA MEC3. A não-complementação de vários fenótipos de sensibilidade em diplóides pso9-1/mec3∆ confirmou o alelismo dos dois mutantes. A sensibilidade à calcofluor white e à cafeína não foi aumentada nas linhagens pso9-1 e mec3∆, em relação as suas respectivas selvagens, sugerindo que o mutante pso9-1 não porta uma mutação na região promotora. O fenótipo mutante de mec3∆ foi levemente mais pronunciado para sensibilidade à 8-MOP + UVA e UVC, e para a supressão de mutação para frente induzida por UVC, sugerindo uma função residual para a proteína produzida por este alelo mutante.
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O objetivo deste estudo foi analisar o papel do polimorfismo de I/D do gene da Enzima Conversora de Angiotensina (ECA) e o polimorfismo K121Q da PC-1 nas modificações das taxas de filtração glomerular (TFG), excreção urinária de albumina (EUA) e pressão arterial em uma coorte de pacientes diabéticos tipo 1 normoalbuminúricos (EUA<20μg/min) em um estudo com seguimento de 10,2 ± 2,0anos (6,5 a 13,3 anos). A EUA (imunoturbidimetria), TFG (técnica da injeção única de 51Cr-EDTA), HbA1c (cromatografia de troca iônica) e pressão arterial foram medidas no início do estudo e a intervalos de 1,7 ± 0,6 anos. O polimorfismo I/D e K121Q foram determinados através da PCR e restrição enzimática. Onze pacientes apresentaram o genótipo II, 13 o ID e 6 apresentaram o genótipo DD. Pacientes com o alelo D (ID/DD) desenvolveram mais freqüentemente hipertensão arterial e retinopatia diabética. Os 3 pacientes do estudo que desenvolveram nefropatia diabética apresentaram o alelo D. Nos pacientes ID/DD (n=19) ocorreu maior redução da TFG quando comparados com os pacientes II (n=11) (-0,39 ± 0,29 vs – 0,12 ± 0,37 ml/min/mês; P=0,035). A presença do alelo D, em análise de regressão múltipla linear (R2=0,15; F=4,92; P=0,035) foi o único fator associado à redução da TFG (-0,29 ± 0,34 ml/min/mês; P<0,05). Já o aumento da EUA (log EUA = 0,0275 ± 0,042 μg/min/mês; P=0,002) foi associado somente aos níveis iniciais de EUA (R2=0,17; F=5,72; P=0,024). Um aumento significativo (P<0,05) no desenvolvimento de hipertensão arterial e de novos casos de retinopatia diabética foi observado somente nos pacientes com os genótipos ID/DD. Vinte e dois pacientes apresentaram genótipo KK, 7 KQ e 1 apresentou genótipo QQ. Pacientes com os genótipos KQ/QQ apresentaram um aumento significativo (P=0,045) de novos casos de retinopatia diabética. Em conclusão a presença do alelo D nesta amostra de pacientes DM tipo 1 normoalbuminúricos e normotensos está associada com aumento na proporção de complicações microvasculares e hipertensão arterial.
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Vetores de expressão são ferramentas moleculares úteis para investigar a função de genes tanto em sistemas procarióticos quanto eucarióticos. O fungo Metarhizium anisopliae, utilizado no controle biológico de artrópodes, é bem caracterizado em nível molecular. Genes candidatos a participar do processo de infecção de hospedeiros tem sido isolados utilizando estratégias em que o gene candidato é predefinido (enzimas hidrolíticas, por exemplo) ou estratégias mais globais como projetos de ESTs e a análise de bibliotecas de subtração. A superexpressão tem sido o método adotado para verificar a participação de genes isolados no processo de infecção. Esta estratégia tem sido baseada no promoter heterólogo PgpdA de Aspergillus nidulans. Neste trabalho, o gene que codifica o fator de alongamento de tradução tef-1 α de Metarhizium anisopliae foi clonado e a sua região promotora foi localizada e utilizada na construção de um vetor de expressão. Somente uma cópia do gene tef-1α está presente no genoma de M. anisopliae e o seu perfil de expressão foi analisado. Uma árvore filogenética foi construída baseada nos ortógos de tef-1 α e mostrou uma alta correlação com o fungo Cordyceps taii. A região de 639 pb à montante do codon de iniciação (ATG) foi utilizada com sucesso para a expressão do gene repórter sGFP e do gene bar, que confere resistência ao glifosinato de amônio, em M. anisopliae. Os transformantes construídos não apresentaram alteração na sua virulência em bioensaios com carrapatos, em relação a linhagem receptora. Além disso, demonstramos que o nível de expressão permite a detecção óptica da fluorescência de sGFP durante a infecção dos carrapatos. Desta forma, o vetor desenvolvido será uma ferramenta útil para a superexpressão em Metarhizium.
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Fundação de Amparo à Pesquisa do Estado de São Paulo (FAPESP)
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Conselho Nacional de Desenvolvimento Científico e Tecnológico (CNPq)
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Coordenação de Aperfeiçoamento de Pessoal de Nível Superior (CAPES)