Anaerobic Formate and Hydrogen Metabolism.

Q1 Medicine
R. Sawers, M. Blokesch, August Böck
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引用次数: 67

Abstract

Numerous recent developments in the biochemistry, molecular biology, and physiology of formate and H2 metabolism and of the [NiFe]-hydrogenase (Hyd) cofactor biosynthetic machinery are highlighted. Formate export and import by the aquaporin-like pentameric formate channel FocA is governed by interaction with pyruvate formate-lyase, the enzyme that generates formate. Formate is disproportionated by the reversible formate hydrogenlyase (FHL) complex, which has been isolated, allowing biochemical dissection of evolutionary parallels with complex I of the respiratory chain. A recently identified sulfido-ligand attached to Mo in the active site of formate dehydrogenases led to the proposal of a modified catalytic mechanism. Structural analysis of the homologous, H2-oxidizing Hyd-1 and Hyd-5 identified a novel proximal [4Fe-3S] cluster in the small subunit involved in conferring oxygen tolerance to the enzymes. Synthesis of Salmonella Typhimurium Hyd-5 occurs aerobically, which is novel for an enterobacterial Hyd. The O2-sensitive Hyd-2 enzyme has been shown to be reversible: it presumably acts as a conformational proton pump in the H2-oxidizing mode and is capable of coupling reverse electron transport to drive H2 release. The structural characterization of all the Hyp maturation proteins has given new impulse to studies on the biosynthesis of the Fe(CN)2CO moiety of the [NiFe] cofactor. It is synthesized on a Hyp-scaffold complex, mainly comprising HypC and HypD, before insertion into the apo-large subunit. Finally, clear evidence now exists indicating that Escherichia coli can mature Hyd enzymes differentially, depending on metal ion availability and the prevailing metabolic state. Notably, Hyd-3 of the FHL complex takes precedence over the H2-oxidizing enzymes.
厌氧甲酸与氢代谢。
在生物化学、分子生物学、甲酸和H2代谢生理学以及[NiFe]-氢化酶(Hyd)辅助因子生物合成机制方面的许多最新进展都得到了强调。类似水通道蛋白的五聚体甲酸通道FocA的甲酸出口和进口受丙酮酸甲酸裂解酶(生成甲酸的酶)的相互作用控制。甲酸被可逆甲酸氢解酶(FHL)复合物歧化,该复合物已被分离出来,允许生物化学解剖与呼吸链复合物I的进化相似之处。最近在甲酸脱氢酶的活性位点上发现了一种与Mo结合的硫配体,从而提出了一种改进的催化机制。对同源的h2氧化型Hyd-1和Hyd-5的结构分析发现,在参与赋予酶氧耐受性的小亚基上,有一个新的近端[4Fe-3S]簇。鼠伤寒沙门氏菌Hyd-5的合成是一种新的肠杆菌Hyd。对o2敏感的氢-2酶已被证明是可逆的:它可能在H2氧化模式中充当构象质子泵,并且能够耦合反向电子传递来驱动H2释放。所有Hyp成熟蛋白的结构特征为[NiFe]辅助因子Fe(CN)2CO部分的生物合成研究提供了新的推动力。在插入载脂蛋白大亚基之前,在主要由HypC和HypD组成的HypC -支架复合物上合成。最后,现在有明确的证据表明,大肠杆菌可以不同地成熟Hyd酶,这取决于金属离子的可用性和普遍的代谢状态。值得注意的是,FHL复合物的Hyd-3优先于h2氧化酶。
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来源期刊
EcoSal Plus
EcoSal Plus Immunology and Microbiology-Microbiology
CiteScore
12.20
自引率
0.00%
发文量
4
期刊介绍: EcoSal Plus is the authoritative online review journal that publishes an ever-growing body of expert reviews covering virtually all aspects of E. coli, Salmonella, and other members of the family Enterobacteriaceae and their use as model microbes for biological explorations. This journal is intended primarily for the research community as a comprehensive and continuously updated archive of the entire corpus of knowledge about the enteric bacterial cell. Thoughtful reviews focus on physiology, metabolism, genetics, pathogenesis, ecology, genomics, systems biology, and history E. coli and its relatives. These provide the integrated background needed for most microbiology investigations and are essential reading for research scientists. Articles contain links to E. coli K12 genes on the EcoCyc database site and are available as downloadable PDF files. Images and tables are downloadable to PowerPoint files.
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