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结核分枝杆菌中的CYP121、CYP51及相关氧化还原系统:迈向解析人类病原体中细胞色素P450系统的酶学

CYP121, CYP51 and associated redox systems in Mycobacterium tuberculosis: towards deconvoluting enzymology of P450 systems in a human pathogen.

作者信息

McLean K J, Dunford A J, Sabri M, Neeli R, Girvan H M, Balding P R, Leys D, Seward H E, Marshall K R, Munro A W

机构信息

Manchester Interdisciplinary Biocentre, School of Chemical Engineering and Analytical Science, University of Manchester, 131 Princess Street, Manchester M1 7ND, UK.

出版信息

Biochem Soc Trans. 2006 Dec;34(Pt 6):1178-82. doi: 10.1042/BST0341178.

Abstract

An extraordinary array of P450 (cytochrome P450) enzymes are encoded on the genome of the human pathogen Mycobacterium tuberculosis (Mtb) and in related mycobacteria and actinobacteria. These include the first characterized sterol 14alpha-demethylase P450 (CYP51), a known target for azole and triazole drugs in yeasts and fungi. To date, only two Mtb P450s have been characterized in detail: CYP51 and CYP121. The CYP121 P450 shows structural relationships with P450 enzymes involved in synthesis of polyketide antibiotics. Both P450s exhibit tight binding to a range of azole drugs (e.g. clotrimazole and fluconazole) and the same drugs also have potent effects on growth of mycobacteria (but not of e.g. Escherichia coli). Atomic structures are available for both Mtb CYP51 and CYP121, revealing modes of azole binding and intriguing mechanistic and structural aspects. This paper reviews our current knowledge of these and the other P450 systems in Mtb including recent data relating to the reversible conversion of the CYP51 enzyme between P450 (thiolate-co-ordinated) and P420 (thiol-co-ordinated) species on reduction of the haem iron in the absence of a P450 substrate. The accessory flavoprotein and iron-sulfur proteins required to drive P450 catalysis are also discussed, providing an overview of the current state of knowledge of Mtb P450 redox systems.

摘要

人类病原体结核分枝杆菌(Mtb)以及相关分枝杆菌和放线菌的基因组中编码了一系列非凡的细胞色素P450(CYP450)酶。其中包括首个被鉴定的甾醇14α-脱甲基酶P450(CYP51),它是酵母和真菌中唑类和三唑类药物的已知靶点。迄今为止,仅对两种Mtb P450进行了详细鉴定:CYP51和CYP121。CYP121 P450与参与聚酮类抗生素合成的P450酶存在结构关联。这两种P450均与多种唑类药物(如克霉唑和氟康唑)紧密结合,并且这些药物对分枝杆菌的生长也有显著影响(但对例如大肠杆菌则无影响)。Mtb CYP51和CYP121的原子结构均已确定,揭示了唑类药物的结合模式以及有趣的机制和结构方面。本文综述了我们目前对Mtb中这些以及其他P450系统的认识,包括近期有关在无P450底物时血红素铁还原后CYP51酶在P450(硫醇盐配位)和P420(硫醇配位)物种之间可逆转化的数据。还讨论了驱动P450催化所需的辅助黄素蛋白和铁硫蛋白,概述了Mtb P450氧化还原系统的当前知识状态。

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