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PduS(pdu 代谢体钴胺素还原酶)的特性,以及细菌微隔间内亚结构组织的证据。

Characterisation of PduS, the pdu metabolosome corrin reductase, and evidence of substructural organisation within the bacterial microcompartment.

机构信息

Centre for Molecular Processing, School of Biosciences, University of Kent, Canterbury, Kent, United Kingdom.

出版信息

PLoS One. 2010 Nov 16;5(11):e14009. doi: 10.1371/journal.pone.0014009.

Abstract

PduS is a corrin reductase and is required for the reactivation of the cobalamin-dependent diol dehydratase. It is one component encoded within the large propanediol utilisation (pdu) operon, which is responsible for the catabolism of 1,2-propanediol within a self-assembled proteinaceous bacterial microcompartment. The enzyme is responsible for the reactivation of the cobalamin coenzyme required by the diol dehydratase. The gene for the cobalamin reductase from Citrobacter freundii (pduS) has been cloned to allow the protein to be overproduced recombinantly in E. coli with an N-terminal His-tag. Purified recombinant PduS is shown to be a flavoprotein with a non-covalently bound FMN that also contains two coupled [4Fe-4S] centres. It is an NADH-dependent flavin reductase that is able to mediate the one-electron reductions of cob(III)alamin to cob(II)alamin and cob(II)alamin to cob(I)alamin. The [4Fe-4S] centres are labile to oxygen and their presence affects the midpoint redox potential of flavin. Evidence is presented that PduS is able to bind cobalamin, which is inconsistent with the view that PduS is merely a flavin reductase. PduS is also shown to interact with one of the shell proteins of the metabolosome, PduT, which is also thought to contain an [Fe-S] cluster. PduS is shown to act as a corrin reductase and its interaction with a shell protein could allow for electron passage out of the bacterial microcompartment.

摘要

PduS 是一种钴胺素还原酶,是依赖钴胺素的二醇脱水酶重新激活所必需的。它是大型丙二醇利用(pdu)操纵子内编码的一个组成部分,该操纵子负责在自组装的蛋白细菌微隔间内分解 1,2-丙二醇。该酶负责重新激活二醇脱水酶所需的钴胺素辅酶。来自柠檬酸杆菌的钴胺素还原酶(pduS)的基因已被克隆,允许在大肠杆菌中通过 N 端 His 标签进行重组过表达。纯化的重组 PduS 被证明是一种黄素蛋白,具有非共价结合的 FMN,还含有两个偶联的[4Fe-4S]中心。它是一种 NADH 依赖性黄素还原酶,能够介导 cob(III)alamin 到 cob(II)alamin 和 cob(II)alamin 到 cob(I)alamin 的单电子还原。[4Fe-4S]中心对氧气不稳定,其存在会影响黄素的中点氧化还原电位。有证据表明 PduS 能够结合钴胺素,这与 PduS 仅仅是一种黄素还原酶的观点不一致。还表明 PduS 与代谢体的一种壳蛋白 PduT 相互作用,该蛋白也被认为含有[Fe-S]簇。PduS 被证明是一种钴胺素还原酶,其与壳蛋白的相互作用可以允许电子从细菌微隔间中传出。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/0ba8/2982820/93cf5ae1ce4f/pone.0014009.g001.jpg

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