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[镍铁]氢化酶的成熟

Maturation of the [NiFe] hydrogenases.

作者信息

Casalot L, Rousset M

机构信息

University of Missouri-Columbia, Biochemistry Dept, 117 Schweitzer Hall, Columbia, MO 65211, USA.

出版信息

Trends Microbiol. 2001 May;9(5):228-37. doi: 10.1016/s0966-842x(01)02009-1.

Abstract

The high degree of similarity that exists between all the [NiFe] hydrogenase operons and the near universality of hydrogen metabolism among microorganisms suggest that the microbial ability to metabolize hydrogen is of great importance and ancient origin. The large number of genes present in these operons, which are mostly involved in the maturation of the structural subunit, is indicative of the complexity of the hydrogenase molecular structure. Two main groups of maturation genes can be differentiated based on the resulting phenotypes when mutated: the 'cis-genes', encoding narrow specificity proteins, are mainly located on the same transcription unit as the structural genes, and the 'trans-genes', encoding broad specificity proteins, are located on a different operon. The maturation of the large subunit starts with the formation of a complex with the chaperone HypC, which remains bound to the amino terminus throughout processing. The ligands CN and CO, which are derived from carbamoylphosphate, are then inserted via HypF and probably other accessory proteins. HypB is responsible for nickel atom delivery in a GTP-hydrolysis-dependent reaction. The last identified step in the large subunit maturation process is proteolytic cleavage at the carboxyl terminus. The possible roles of the other maturation proteins are also discussed.

摘要

所有[NiFe]氢化酶操纵子之间存在的高度相似性以及微生物中氢代谢的近乎普遍性表明,微生物代谢氢的能力非常重要且起源古老。这些操纵子中存在大量基因,其中大部分参与结构亚基的成熟,这表明氢化酶分子结构很复杂。根据突变时产生的表型,可以区分出两组主要的成熟基因:编码特异性较窄蛋白质的“顺式基因”,主要与结构基因位于同一个转录单元上;编码特异性较宽蛋白质的“反式基因”,位于不同的操纵子上。大亚基的成熟始于与伴侣蛋白HypC形成复合物,在整个加工过程中HypC一直与氨基末端结合。然后,通过HypF以及可能的其他辅助蛋白插入源自氨基甲酰磷酸的配体CN和CO。HypB负责在依赖GTP水解的反应中传递镍原子。大亚基成熟过程中最后确定的步骤是羧基末端的蛋白水解切割。还讨论了其他成熟蛋白可能的作用。

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