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通过定点自旋标记识别构象变化表明,HydF 的 GTPase 结构域是一个分子开关。

Identifying conformational changes with site-directed spin labeling reveals that the GTPase domain of HydF is a molecular switch.

机构信息

Department of Chemical Sciences, University of Padova, Via F. Marzolo 1, 35131, Padova, Italy.

Department of Biology, University of Padova, Viale G. Colombo 3, 35131, Padova, Italy.

出版信息

Sci Rep. 2017 May 10;7(1):1714. doi: 10.1038/s41598-017-01886-y.

Abstract

[FeFe]-hydrogenases catalyse the reduction of protons to hydrogen at a complex 2Fe[4Fe4S] center called H-cluster. The assembly of this active site is a multistep process involving three proteins, HydE, HydF and HydG. According to the current models, HydF has the key double role of scaffold, upon which the final H-cluster precursor is assembled, and carrier to transfer it to the target hydrogenase. The X-ray structure of HydF indicates that the protein is a homodimer with both monomers carrying two functional domains: a C-terminal FeS cluster-binding domain, where the precursor is assembled, and a N-terminal GTPase domain, whose exact contribution to cluster biogenesis and hydrogenase activation is still elusive. We previously obtained several hints suggesting that the binding of GTP to HydF could be involved in the interactions of this scaffold protein with the other maturases and with the hydrogenase itself. In this work, by means of site directed spin labeling coupled to EPR/PELDOR spectroscopy, we explored the conformational changes induced in a recombinant HydF protein by GTP binding, and provide the first clue that the HydF GTPase domain could be involved in the H-cluster assembly working as a molecular switch similarly to other known small GTPases.

摘要

[FeFe]-氢化酶在称为 H 簇的复杂 2Fe[4Fe4S]中心催化质子还原为氢气。该活性位点的组装是一个多步骤过程,涉及三种蛋白质,即 HydE、HydF 和 HydG。根据目前的模型,HydF 具有关键的双重作用,既是支架,其上组装最终的 H 簇前体,又是载体,将其转移到目标氢化酶。HydF 的 X 射线结构表明,该蛋白是一个同源二聚体,两个单体都携带两个功能域:C 端 FeS 簇结合域,前体在此组装,以及 N 端 GTPase 结构域,其对簇生物发生和氢化酶激活的确切贡献仍不清楚。我们之前获得了一些线索,表明 GTP 与 HydF 的结合可能涉及该支架蛋白与其他成熟酶以及与自身氢化酶的相互作用。在这项工作中,我们通过与 EPR/PELDOR 光谱学相结合的定点自旋标记,研究了 GTP 结合诱导重组 HydF 蛋白发生的构象变化,并提供了第一个线索,表明 HydF GTPase 结构域可能参与 H 簇组装,作为分子开关,类似于其他已知的小 GTP 酶。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/8b61/5431965/c379e16e7c04/41598_2017_1886_Fig1_HTML.jpg

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