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A broad survey reveals substitution tolerance of residues ligating FeS clusters in NiFe hydrogenase

机译:广泛的调查显示NiFe氢化酶中连接FeS簇的残基的取代耐受性

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摘要

BackgroundIn order to understand the effects of FeS cluster attachment in [NiFe] hydrogenase, we undertook a study to substitute all 12 amino acid positions normally ligating the three FeS clusters in the hydrogenase small subunit. Using the hydrogenase from Alteromonas macleodii “deep ecotype” as a model, we substituted one of four amino acids (Asp, His, Asn, Gln) at each of the 12 ligating positions because these amino acids are alternative coordinating residues in otherwise conserved-cysteine positions found in a broad survey of NiFe hydrogenase sequences. We also hoped to discover an enzyme with elevated hydrogen evolution activity relative to a previously reported “G1” (H230C/P285C) improved enzyme in which the medial FeS cluster Pro and the distal FeS cluster His were each substituted for Cys.
机译:背景为了了解FeS簇附着在[NiFe]氢化酶中的作用,我们进行了一项研究,以取代通常连接氢化酶小亚基中三个FeS簇的所有12个氨基酸位置。使用来自“深绿色生态型”链霉菌的加氢酶作为模型,我们在12个连接位点的每个位置替换了四个氨基酸之一(Asp,His,Asn,Gln),因为这些氨基酸是原本保守的半胱氨酸中的其他配位残基NiFe氢化酶序列的广泛调查中找到的位置。我们还希望发现一种相对于先前报道的“ G1”(H230C / P285C)改良酶具有更高的氢释放活性的酶,其中内侧FeS簇Pro和远端FeS簇His分别替代了Cys。

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