氢化酶
化学
催化作用
辅因子
活动站点
组合化学
锰
劈开
酶
过渡金属
金属
金属蛋白
有机化学
作者
Hui‐Jie Pan,Gangfeng Huang,Matthew D. Wodrich,Farzaneh Fadaei‐Tirani,Kenichi Ataka,Seigo Shima,Xile Hu
出处
期刊:Nature Chemistry
[Nature Portfolio]
日期:2019-05-20
卷期号:11 (7): 669-675
被引量:63
标识
DOI:10.1038/s41557-019-0266-1
摘要
Nature carefully selects specific metal ions for incorporation into the enzymes that catalyse the chemical reactions necessary for life. Hydrogenases, enzymes that activate molecular H2, exclusively utilize Ni and Fe in [NiFe]-, [FeFe]- and [Fe]-hydrogeanses. However, other transition metals are known to activate or catalyse the production of hydrogen in synthetic systems. Here, we report the development of a biomimetic model complex of [Fe]-hydrogenase that incorporates a Mn, as opposed to a Fe, metal centre. This Mn complex is able to heterolytically cleave H2 as well as catalyse hydrogenation reactions. The incorporation of the model into an apoenzyme of [Fe]-hydrogenase results in a [Mn]-hydrogenase with an enhanced occupancy-normalized activity over an analogous semi-synthetic [Fe]-hydrogenase. These findings demonstrate a non-native metal hydrogenase that shows catalytic functionality and that hydrogenases based on a manganese active site are viable.
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