首页> 美国卫生研究院文献>Proceedings of the National Academy of Sciences of the United States of America >CO and CN− syntheses by FeFe-hydrogenase maturase HydG are catalytically differentiated events
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CO and CN− syntheses by FeFe-hydrogenase maturase HydG are catalytically differentiated events

机译:FeFe-氢化酶成熟酶HydG合成CO和CN-是催化分化事件

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摘要

The synthesis and assembly of the active site [FeFe] unit of [FeFe]-hydrogenases require at least three maturases. The radical S-adenosyl-l-methionine HydG, the best characterized of these proteins, is responsible for the synthesis of the hydrogenase CO and CN ligands from tyrosine-derived dehydroglycine (DHG). We speculated that CN and the CO precursor :CO2H may be generated through an elimination reaction. We tested this hypothesis with both wild type and HydG variants defective in second iron-sulfur cluster coordination by measuring the in vitro production of CO, CN, and :CO2H-derived formate. We indeed observed formate production under these conditions. We conclude that HydG is a multifunctional enzyme that produces DHG, CN, and CO at three well-differentiated catalytic sites. We also speculate that homocysteine, cysteine, or a related ligand could be involved in Fe(CO)x(CN)y transfer to the HydF carrier/scaffold.
机译:[FeFe]-加氢酶的活性位点[FeFe]单元的合成和组装需要至少三个成熟酶。这些蛋白质最有特征的自由基S-腺苷-1-蛋氨酸HydG负责从酪氨酸衍生的脱氢甘氨酸(DHG)合成氢化酶CO和CN -配体。我们推测,CN -和CO前体-:CO2H可能通过消除反应生成。我们通过测量CO,CN --:CO2H-的体外产生,用第二铁-硫簇协同作用中有缺陷的野生型和HydG变体测试了该假设。衍生甲酸盐。我们确实在这些条件下观察到了甲酸盐的产生。我们得出结论,HydG是一种多功能酶,可在三个高度分化的催化位点产生DHG,CN -和CO。我们还推测同型半胱氨酸,半胱氨酸或相关配体可能参与Fe(CO)x(CN)y转移到HydF载体/支架。

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