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交联质谱和诱变确认 CYP3A4 与全酶/脱辅基细胞色素 b(5)之间表面相互作用的功能重要性。

Cross-linking mass spectrometry and mutagenesis confirm the functional importance of surface interactions between CYP3A4 and holo/apo cytochrome b(5).

机构信息

Department of Medicinal Chemistry, University of Washington, Box 357610, Seattle, WA 98195, USA.

出版信息

Biochemistry. 2012 Nov 27;51(47):9488-500. doi: 10.1021/bi301069r. Epub 2012 Nov 14.

Abstract

Cytochrome b(5) (cyt b(5)) is one of the key components in the microsomal cytochrome P450 monooxygenase system. Consensus has not been reached about the underlying mechanism of cyt b(5) modulation of CYP catalysis. Both cyt b(5) and apo b(5) are reported to stimulate the activity of several P450 isoforms. In this study, the surface interactions of both holo and apo b(5) with CYP3A4 were investigated and compared for the first time. Chemical cross-linking coupled with mass spectrometric analysis was used to identify the potential electrostatic interactions between the protein surfaces. Subsequently, the models of interaction of holo/apo b(5) with CYP3A4 were built using the identified interacting sites as constraints. Both cyt b(5) and apo b(5) were predicted to bind to the same groove on CYP3A4 with close contacts to the B-B' loop of CYP3A4, a substrate recognition site. Mutagenesis studies further confirmed that the interacting sites on CYP3A4 (Lys96, Lys127, and Lys421) are functionally important. Mutation of these residues reduced or abolished cyt b(5) binding affinity. The critical role of Arg446 on CYP3A4 in binding to cyt b(5) and/or cytochrome P450 reductase was also discovered. The results indicated that electrostatic interactions on the interface of the two proteins are functionally important. The results indicate that apo b(5) can dock with CYP3A4 in a manner analogous to that of holo b(5), so electron transfer from cyt b(5) is not required for its effects.

摘要

细胞色素 b(5) (cyt b(5)) 是微粒体细胞色素 P450 单加氧酶系统的关键组成部分之一。关于 cyt b(5) 调节 CYP 催化作用的潜在机制尚未达成共识。据报道,cyt b(5) 和 apo b(5) 都能刺激几种 P450 同工酶的活性。在这项研究中,首次研究并比较了全酶和脱辅基蛋白 b(5) 与 CYP3A4 的表面相互作用。使用化学交联结合质谱分析来鉴定蛋白质表面之间潜在的静电相互作用。随后,使用鉴定出的相互作用位点作为约束,构建了全酶/脱辅基蛋白 b(5) 与 CYP3A4 相互作用的模型。cyt b(5) 和 apo b(5) 都被预测与 CYP3A4 上的同一凹槽结合,与 CYP3A4 的 B-B'环(底物识别位点)有密切接触。突变研究进一步证实 CYP3A4 上的相互作用位点(Lys96、Lys127 和 Lys421)在功能上很重要。这些残基的突变降低或消除了 cyt b(5) 的结合亲和力。还发现 CYP3A4 上的 Arg446 残基在与 cyt b(5) 和/或细胞色素 P450 还原酶结合中起着关键作用。结果表明,两种蛋白质界面上的静电相互作用在功能上很重要。结果表明,apo b(5) 可以以类似于全酶 b(5) 的方式与 CYP3A4 对接,因此不需要 cyt b(5) 进行电子转移来发挥其作用。

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