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来自大肠杆菌的不依赖氧气的粪卟啉原-III氧化酶HemN

Oxygen-independent coproporphyrinogen-III oxidase HemN from Escherichia coli.

作者信息

Layer Gunhild, Verfürth Knut, Mahlitz Esther, Jahn Dieter

机构信息

Institut für Mikrobiologie, Technische Universität Braunschweig, Spielmannstrasse 7, D-38106 Braunschweig, Germany.

出版信息

J Biol Chem. 2002 Sep 13;277(37):34136-42. doi: 10.1074/jbc.M205247200. Epub 2002 Jul 11.

Abstract

In bacteria the oxygen-independent coproporphyrinogen-III oxidase catalyzes the oxygen-independent conversion of coproporphyrinogen-III to protoporphyrinogen-IX. The Escherichia coli hemN gene encoding a putative part of this enzyme was overexpressed in E. coli. Anaerobically purified HemN is a monomeric protein with a native M(r) = 52,000 +/- 5,000. A newly established anaerobic enzyme assay was used to demonstrate for the first time in vitro coproporphyrinogen-III oxidase activity for recombinant purified HemN. The enzyme requires S-adenosyl-l-methionine (SAM), NAD(P)H, and additional cytoplasmatic components for catalysis. An oxygen-sensitive iron-sulfur cluster was identified by absorption spectroscopy and iron analysis. Cysteine residues Cys(62), Cys(66), and Cys(69), which are part of the conserved CXXXCXXC motif found in all HemN proteins, are essential for iron-sulfur cluster formation and enzyme function. Completely conserved residues Tyr(56) and His(58), localized closely to the cysteine-rich motif, were found to be important for iron-sulfur cluster integrity. Mutation of Gly(111) and Gly(113), which are part of the potential GGGTP S-adenosyl-l-methionine binding motif, completely abolished enzymatic function. Observed functional properties in combination with a recently published computer-based enzyme classification (Sofia, H. J., Chen, G., Hetzler, B. G., Reyes-Spindola, J. F., and Miller, N. E. (2001) Nucleic Acids Res. 29, 1097-1106) identifies HemN as "Radical SAM enzyme." An appropriate enzymatic mechanism is suggested.

摘要

在细菌中,不依赖氧气的粪卟啉原 -III氧化酶催化粪卟啉原 -III向原卟啉原 -IX的不依赖氧气的转化。编码该酶假定部分的大肠杆菌hemN基因在大肠杆菌中过表达。厌氧纯化的HemN是一种单体蛋白,天然相对分子质量为52,000±5,000。一种新建立的厌氧酶测定法首次用于在体外证明重组纯化的HemN具有粪卟啉原 -III氧化酶活性。该酶催化需要S -腺苷 -L -甲硫氨酸(SAM)、NAD(P)H和其他细胞质成分。通过吸收光谱和铁分析鉴定出一个对氧气敏感的铁硫簇。半胱氨酸残基Cys(62)、Cys(66)和Cys(69)是所有HemN蛋白中保守的CXXXCXXC基序的一部分,对铁硫簇的形成和酶功能至关重要。发现紧邻富含半胱氨酸基序定位的完全保守残基Tyr(56)和His(58)对铁硫簇的完整性很重要。作为潜在的GGGTP S -腺苷 -L -甲硫氨酸结合基序一部分的Gly(111)和Gly(113)发生突变会完全消除酶功能。观察到的功能特性与最近发表的基于计算机的酶分类(Sofia, H. J., Chen, G., Hetzler, B. G., Reyes - Spindola, J. F., and Miller, N. E. (2001) Nucleic Acids Res. 29, 1097 - 1106)相结合,将HemN鉴定为“自由基SAM酶”。提出了一种合适的酶促机制。

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