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HydF 的 [4Fe-4S]- 簇对于 [FeFe]-氢化酶中二铁位点的结合和转移不是必需的。

The [4Fe-4S]-Cluster of HydF is not Required for the Binding and Transfer of the Diiron Site of [FeFe]-Hydrogenases.

机构信息

Photobiotechnology, Department of Plant Biochemistry, Ruhr-Universität Bochum, 44801, Bochum, Germany.

Chair of Inorganic Chemistry I, Ruhr-Universität Bochum, 44801, Bochum, Germany.

出版信息

Chembiochem. 2023 Jun 1;24(11):e202300222. doi: 10.1002/cbic.202300222. Epub 2023 May 4.

Abstract

The active site of [FeFe]-hydrogenases contains a cubane [4Fe-4S]-cluster and a unique diiron cluster with biologically unusual CO and CN ligands. The biogenesis of this diiron site, termed [2Fe ], requires the maturation proteins HydE, HydF and HydG. During the maturation process HydF serves as a scaffold protein for the final assembly steps and the subsequent transfer of the [2Fe ] precursor, termed [2Fe ], to the [FeFe]-hydrogenase. The binding site of [2Fe ] in HydF has not been elucidated, however, the [4Fe-4S]-cluster of HydF was considered as a possible binding partner of [2Fe ]. By targeting individual amino acids in HydF from Thermosipho melanesiensis using site directed mutagenesis, we examined the postulated binding mechanism as well as the importance and putative involvement of the [4Fe-4S]-cluster for binding and transferring [2Fe ]. Surprisingly, our results suggest that binding or transfer of [2Fe ] does not involve the proposed binding mechanism or the presence of a [4Fe-4S]-cluster at all.

摘要

[FeFe]-氢化酶的活性部位含有一个立方烷[4Fe-4S]-簇和一个独特的二铁簇,具有生物上不寻常的 CO 和 CN 配体。这个二铁位点的生物发生,称为[2Fe],需要成熟蛋白 HydE、HydF 和 HydG。在成熟过程中,HydF 作为最终组装步骤的支架蛋白,并随后将[2Fe]前体,称为[2Fe],转移到[FeFe]-氢化酶。然而,HydF 中[2Fe]的结合位点尚未阐明,但是,HydF 的[4Fe-4S]-簇被认为是[2Fe]的可能结合伙伴。通过使用定点突变靶向来自Thermosipho melanesiensis 的 HydF 中的单个氨基酸,我们研究了假定的结合机制以及[4Fe-4S]-簇对于结合和转移[2Fe]的重要性和可能的参与。令人惊讶的是,我们的结果表明,[2Fe]的结合或转移根本不涉及所提出的结合机制或[4Fe-4S]-簇的存在。

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