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Investigation of the mechanisms underlying the differential effects of the K262R mutation of P450 2B6 on catalytic activity

机译:P450 2B6的K262R突变对催化活性的差异影响的潜在机理研究

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摘要

Human P450 2B6 is a polymorphic enzyme involved in the oxidative metabolism of a number of clinically relevant substrates. The lysine 262 to arginine mutant of P450 2B6 (P450 2B6.4) has been shown to have differential effects on P450 2B6 catalytic activity. We previously reported that the mutant enzyme was not able to metabolize 17-α-ethynylestradiol (17EE) or become inactivated by 17EE or efavirenz, which are inactivators of the wild-type enzyme. Studies were performed to elucidate the mechanism by which this mutation affects P450 2B6 catalytic activity. Studies using phenyldiazene to investigate differences between the active site topologies of the wild-type and mutant enzymes revealed only minor differences. Similarly, Ks values for the binding of both benzphetamine and efavirenz were comparable between the two enzymes. Using the alternate oxidant tert-butyl hydroperoxide, the mutant enzyme was inactivated by both 17EE and efavirenz. The stoichiometry of 17EE and efavirenz metabolism by P450s 2B6 and 2B6.4 revealed the mutant enzyme was more uncoupled, producing hydrogen peroxide as the primary product. Interestingly, the addition of cytochrome b5 improved the coupling of the mutant, resulting in increased catalytic activity. In the presence of cytochrome b5 the variant readily metabolized 17EE and was inactivated by both 17EE and efavirenz. It is therefore proposed that the oxyferrous or iron-peroxo intermediate formed by the mutant enzyme in the presence of 17EE and efavirenz may be less stable than the same intermediates formed by the wild-type enzyme.
机译:人P450 2B6是一种多态性酶,参与许多临床相关底物的氧化代谢。 P450 2B6(P450 2B6.4)的赖氨酸262突变为精氨酸突变体对P450 2B6的催化活性具有不同的影响。我们之前曾报道过该突变酶无法代谢17-α-乙炔基雌二醇(17EE)或被17EE或依非韦伦(efavirenz)灭活,后者是野生型酶的灭活剂。进行了研究以阐明该突变影响P450 2B6催化活性的机制。使用苯基二氮烯研究野生型和突变型酶的活性位点拓扑之间差异的研究表明,只有很小的差异。类似地,两种酶之间苯丙胺和依非韦伦的结合的Ks值相当。使用替代氧化剂氢过氧化叔丁基,突变的酶被17EE和依非韦伦灭活。 P450 2B6和2B6.4对17EE的化学计量和依非韦伦的代谢表明,突变酶之间的偶联程度更高,产生了过氧化氢作为主要产物。有趣的是,细胞色素b5的添加改善了突变体的偶联,从而提高了催化活性。在细胞色素b5存在的情况下,该变体容易代谢17EE,并被17EE和依非韦伦灭活。因此,提出了在17EE和依非韦伦存在下由突变酶形成的氧化亚铁或铁-过氧中间体可能比野生型酶形成的相同中间体不稳定。

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