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首页> 外文期刊>Pharmacogenetics and genomics >Substrate-specific modulation of CYP3A4 activity by genetic variants of cytochrome P450 oxidoreductase.
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Substrate-specific modulation of CYP3A4 activity by genetic variants of cytochrome P450 oxidoreductase.

机译:细胞色素P450氧化还原酶的遗传变异对CYP3A4活性的底物特异性调节。

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OBJECTIVES: CYP3A4 receives electrons from P450 oxidoreductase (POR) to metabolize about 50% of clinically used drugs. There is substantial inter-individual variation in CYP3A4 catalytic activity that is not explained by CYP3A4 genetic variants. CYP3A4 is flexible and distensible, permitting it to accommodate substrates varying in shape and size. To elucidate the mechanisms of variability in CYP3A4 catalysis, we examined the effects of genetic variants of POR, and explored the possibility that substrate-induced conformational changes in CYP3A4 differentially affect the ability of POR variants to support catalysis. METHODS: We expressed human CYP3A4 and four POR variants (Q153R, A287P, R457H, A503 V) in bacteria, reconstituted them in vitro and measured the Michaelis constant and maximum velocity with testosterone, midazolam, quinidine and erythromycin as substrates. RESULTS: POR A287P and R457H had low activity with all substrates; Q153R had 76-94% of wild-type (WT) activity with midazolam and erythromycin, but 129-150% activity with testosterone and quinidine. The A503 V polymorphism reduced the CYP3A4 activity to 61-77% of WT with testosterone and midazolam, but had nearly WT activity with quinidine and erythromycin. CONCLUSION: POR variants affect CYP3A4 activities. The impact of a POR variant on catalysis by CYP3A4 is substrate-specific, probably because of substrate-induced conformational changes in CYP3A4.
机译:目的:CYP3A4从P450氧化还原酶(POR)接收电子,以代谢约50%的临床使用药物。 CYP3A4催化活性存在大量个体间差异,CYP3A4遗传变异并未解释。 CYP3A4具有柔韧性和可扩展性,可容纳各种形状和尺寸的底物。为了阐明CYP3A4催化变异性的机制,我们研究了POR遗传变异的影响,并探讨了底物诱导的CYP3A4构象变化差异影响POR变异支持催化能力的可能性。方法:我们在细菌中表达人CYP3A4和四个POR变体(Q153R,A287P,R457H,A503 V),在体外对其进行重组,并以睾丸激素,咪达唑仑,奎尼丁和红霉素为底物测量米氏常数和最大速度。结果:POR A287P和R457H在所有底物上的活性均较低。 Q153R对咪达唑仑和红霉素具有76-94%的野生型(WT)活性,但对睾丸酮和奎尼丁具有129-150%的活性。 A503 V多态性将CYP3A4活性降低至睾丸酮和咪达唑仑的WT的61-77%,但与奎尼丁和红霉素的WT活性几乎相同。结论:POR变异体影响CYP3A4活性。 POR变异体对CYP3A4催化的影响是底物特异性的,可能是由于底物诱导的CYP3A4构象变化。

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