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研究谷胱甘肽衍生的静电和氢键相互作用及其在定义 Grx5 [2Fe-2S] 簇光学光谱和转移化学中的作用。

Investigation of glutathione-derived electrostatic and hydrogen-bonding interactions and their role in defining Grx5 [2Fe-2S] cluster optical spectra and transfer chemistry.

机构信息

Department of Chemistry and Biochemistry, The Ohio State University, 100 West 18th Avenue, Columbus, OH, 43210, USA.

CIBIO, University of Trento, Via Sommarive 9, 38123, Povo, Italy.

出版信息

J Biol Inorg Chem. 2018 Mar;23(2):241-252. doi: 10.1007/s00775-017-1525-5. Epub 2017 Dec 20.

Abstract

Human glutaredoxin 5 (Grx5) is one of the core components of the Isc (iron-sulfur cluster) assembly and trafficking machinery, and serves as an intermediary cluster carrier, putatively delivering cluster from the Isu scaffold protein to target proteins. The tripeptide glutathione is intimately involved in this role, providing cysteinyl coordination to the iron center of the Grx5-bound [2Fe-2S] cluster. Grx5 has a well-defined glutathione-binding pocket with protein amino acid residues providing many ionic and hydrogen binding contacts to the bound glutathione. In this report, we investigated the importance of these interactions in cluster chirality and exchange reactivity by systematically perturbing the crucial contacts by use of natural and non-natural amino acid substitutions to disrupt the binding contacts from both the protein and glutathione. Native Grx5 could be reconstituted with all of the glutathione analogs used, as well as other thiol ligands, such as DTT or L-cysteine, by in vitro chemical reconstitution, and the holo proteins were found to transfer [2Fe-2S] cluster to apo ferredoxin 1 at comparable rates. However, the circular dichroism spectra of these derivatives displayed prominent differences that reflect perturbations in local cluster chirality. These studies provided a detailed molecular understanding of glutathione-protein interactions in holo Grx5 that define both cluster spectroscopy and exchange chemistry.

摘要

人类谷氧还蛋白 5(Grx5)是铁硫簇组装和运输机制的核心组成部分之一,作为一种中介簇载体,将簇从 Isu 支架蛋白递送到靶蛋白。三肽谷胱甘肽在这个过程中起着重要的作用,为 Grx5 结合的[2Fe-2S]簇的铁中心提供半胱氨酸配位。Grx5 有一个明确的谷胱甘肽结合口袋,蛋白质氨基酸残基提供许多离子和氢键与结合的谷胱甘肽相互作用。在本报告中,我们通过使用天然和非天然氨基酸取代来系统地扰乱关键接触,从而扰乱来自蛋白质和谷胱甘肽的结合接触,研究了这些相互作用在簇手性和交换反应性中的重要性。通过体外化学重组,天然 Grx5 可以与所有使用的谷胱甘肽类似物以及其他硫醇配体(如 DTT 或 L-半胱氨酸)重新形成,并且发现全酶蛋白以可比的速率将[2Fe-2S]簇转移到脱辅基铁氧还蛋白 1。然而,这些衍生物的圆二色性光谱显示出明显的差异,反映了局部簇手性的干扰。这些研究提供了对全酶 Grx5 中谷胱甘肽-蛋白质相互作用的详细分子理解,这些相互作用定义了簇的光谱和交换化学。

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