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硒代半胱氨酸在 [NiFeSe]氢化酶成熟和催化中的直接作用。

The direct role of selenocysteine in [NiFeSe] hydrogenase maturation and catalysis.

机构信息

Instituto de Tecnologia Química e Biológica António Xavier, Universidade Nova de Lisboa, Oeiras, Portugal.

Instituto de Catálisis y Petroleoquímica (CSIC), Madrid, Spain.

出版信息

Nat Chem Biol. 2017 May;13(5):544-550. doi: 10.1038/nchembio.2335. Epub 2017 Mar 20.

Abstract

Hydrogenases are highly active enzymes for hydrogen production and oxidation. [NiFeSe] hydrogenases, in which selenocysteine is a ligand to the active site Ni, have high catalytic activity and a bias for H production. In contrast to [NiFe] hydrogenases, they display reduced H inhibition and are rapidly reactivated after contact with oxygen. Here we report an expression system for production of recombinant [NiFeSe] hydrogenase from Desulfovibrio vulgaris Hildenborough and study of a selenocysteine-to-cysteine variant (Sec489Cys) in which, for the first time, a [NiFeSe] hydrogenase was converted to a [NiFe] type. This modification led to severely reduced Ni incorporation, revealing the direct involvement of this residue in the maturation process. The Ni-depleted protein could be partly reconstituted to generate an enzyme showing much lower activity and inactive states characteristic of [NiFe] hydrogenases. The Ni-Sec489Cys variant shows that selenium has a crucial role in protection against oxidative damage and the high catalytic activities of the [NiFeSe] hydrogenases.

摘要

氢化酶是高效的产氢和氧化酶。[NiFeSe]氢化酶中,硒代半胱氨酸是活性位点 Ni 的配体,具有高催化活性和产氢偏好。与[NiFe]氢化酶相比,它们显示出降低的 H 抑制作用,并在与氧气接触后迅速重新激活。在这里,我们报告了一种从脱硫弧菌希尔顿布勒生产重组[NiFeSe]氢化酶的表达系统,并研究了一种硒代半胱氨酸到半胱氨酸的变体(Sec489Cys),这是首次将[NiFeSe]氢化酶转化为[NiFe]型。这种修饰导致 Ni 掺入严重减少,揭示了该残基直接参与成熟过程。部分还原的 Ni 耗尽蛋白可以重新组装生成一种酶,其活性显著降低,并且具有[NiFe]氢化酶的无活性状态特征。Ni-Sec489Cys 变体表明,硒在保护免受氧化损伤和[NiFeSe]氢化酶的高催化活性方面起着至关重要的作用。

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