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一硫键谷胱甘肽还原酶-BolA 相互作用:拟南芥 BolA2 和 SufE1 的氧化还原调控。

Monothiol glutaredoxin-BolA interactions: redox control of Arabidopsis thaliana BolA2 and SufE1.

机构信息

a Université de Lorraine, Interactions Arbres-Microorganismes, UMR1136, F-54500 Vandoeuvre-lès-Nancy, France.

出版信息

Mol Plant. 2014 Jan;7(1):187-205. doi: 10.1093/mp/sst156. Epub 2013 Nov 7.

Abstract

A functional relationship between monothiol glutaredoxins and BolAs has been unraveled by genomic analyses and in several high-throughput studies. Phylogenetic analyses coupled to transient expression of green fluorescent protein (GFP) fusions indicated that, in addition to the sulfurtransferase SufE1, which contains a C-terminal BolA domain, three BolA isoforms exist in Arabidopsis thaliana, BolA1 being plastidial, BolA2 nucleo-cytoplasmic, and BolA4 dual-targeted to mitochondria and plastids. Binary yeast two-hybrid experiments demonstrated that all BolAs and SufE1, via its BolA domain, can interact with all monothiol glutaredoxins. Most interactions between protein couples of the same subcellular compartment have been confirmed by bimolecular fluorescence complementation. In vitro experiments indicated that monothiol glutaredoxins could regulate the redox state of BolA2 and SufE1, both proteins possessing a single conserved reactive cysteine. Indeed, a glutathionylated form of SufE1 lost its capacity to activate the cysteine desulfurase, Nfs2, but it is reactivated by plastidial glutaredoxins. Besides, a monomeric glutathionylated form and a dimeric disulfide-bridged form of BolA2 can be preferentially reduced by the nucleo-cytoplasmic GrxS17. These results indicate that the glutaredoxin-BolA interaction occurs in several subcellular compartments and suggest that a redox regulation mechanism, disconnected from their capacity to form iron-sulfur cluster-bridged heterodimers, may be physiologically relevant for BolA2 and SufE1.

摘要

通过基因组分析和多项高通量研究,揭示了单硫氧还蛋白与 BolA 之间的功能关系。系统发育分析结合绿色荧光蛋白(GFP)融合蛋白的瞬时表达表明,除了含有 C 端 BolA 结构域的硫转移酶 SufE1 外,拟南芥中还存在 3 种 BolA 同工型,BolA1 定位于质体,BolA2 定位于核质,BolA4 定位于线粒体和质体。双酵母双杂交实验表明,所有 BolA 和 SufE1 通过其 BolA 结构域均可与所有单硫氧还蛋白相互作用。大多数具有相同亚细胞区室的蛋白质对之间的相互作用已通过双分子荧光互补实验得到证实。体外实验表明,单硫氧还蛋白可以调节 BolA2 和 SufE1 的氧化还原状态,这两种蛋白都含有一个保守的反应性半胱氨酸。实际上,SufE1 的谷胱甘肽化形式丧失了激活半胱氨酸脱硫酶 Nfs2 的能力,但可被质体的谷氧还蛋白重新激活。此外,BolA2 的单体谷胱甘肽化形式和二聚体二硫键桥连形式可被核质 GrxS17 优先还原。这些结果表明,谷氧还蛋白与 BolA 的相互作用发生在多个亚细胞区室中,并表明 BolA2 和 SufE1 的氧化还原调控机制与其形成铁硫簇桥连异二聚体的能力无关,可能在生理上具有相关性。

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