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Energy-Converting [NiFe] Hydrogenases: More than Just H2 Activation

机译:能量转换[NiFe]氢化酶:不仅仅是H2活化

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摘要

The well-characterized [NiFe] hydrogenases have a key function in the H2 metabolism of various microorganisms. A subfamily of the [NiFe] hydrogenases with unique properties has recently been identified. The six conserved subunits that build the core of these membrane-bound hydrogenases share sequence similarity with subunits that form the catalytic core of energy-conserving NADH:quinone oxidoreductases (complex I). The physiological role of some of these hydrogenases is to catalyze the reduction of H+ with electrons derived from reduced ferredoxins or polyferredoxins. This exergonic reaction is coupled to energy conservation by means of electron-transport phosphorylation. Other members of this hydrogenase subfamily mainly function in providing the cell with reduced ferredoxin using H2 as electron donor in a reaction driven by reverse electron transport. These hydrogenases have therefore been designated as energy-converting [NiFe] hydrogenases.
机译:特征明确的[NiFe]氢化酶在各种微生物的H2代谢中起关键作用。最近已经鉴定出具有独特性质的[NiFe]氢化酶的一个亚家族。构成这些膜结合的氢酶核心的六个保守亚基与形成节能NADH:醌氧化还原酶(复合物I)的催化核心的亚基具有序列相似性。这些氢化酶中的一些的生理作用是用衍生自还原的铁氧还蛋白或聚铁氧还蛋白的电子催化H +的还原。该电子反应通过电子传输磷酸化与能量守恒结合。该氢化酶亚家族的其他成员主要用于在由反向电子传输驱动的反应中,使用H2作为电子供体,为细胞提供还原的铁氧还蛋白。这些氢化酶因此被指定为能量转换[NiFe]氢化酶。

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