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硫代硫酸盐硫转移酶样结构域包含蛋白 1 与硫氧还蛋白相互作用。

Thiosulfate sulfurtransferase-like domain-containing 1 protein interacts with thioredoxin.

机构信息

Department of Biological Chemistry, University of Michigan Medical Center, Ann Arbor, Michigan 48109.

Life Sciences Institute, University of Michigan Medical Center, Ann Arbor, Michigan 48109.

出版信息

J Biol Chem. 2018 Feb 23;293(8):2675-2686. doi: 10.1074/jbc.RA117.000826. Epub 2018 Jan 18.

Abstract

Rhodanese domains are structural modules present in the sulfurtransferase superfamily. These domains can exist as single units, in tandem repeats, or fused to domains with other activities. Despite their prevalence across species, the specific physiological roles of most sulfurtransferases are not known. Mammalian rhodanese and mercaptopyruvate sulfurtransferase are perhaps the best-studied members of this protein superfamily and are involved in hydrogen sulfide metabolism. The relatively unstudied human thiosulfate sulfurtransferase-like domain-containing 1 (TSTD1) protein, a single-domain cytoplasmic sulfurtransferase, was also postulated to play a role in the sulfide oxidation pathway using thiosulfate to form glutathione persulfide, for subsequent processing in the mitochondrial matrix. Prior kinetic analysis of TSTD1 was performed at pH 9.2, raising questions about relevance and the proposed model for TSTD1 function. In this study, we report a 1.04 Å resolution crystal structure of human TSTD1, which displays an exposed active site that is distinct from that of rhodanese and mercaptopyruvate sulfurtransferase. Kinetic studies with a combination of sulfur donors and acceptors reveal that TSTD1 exhibits a low for thioredoxin as a sulfane sulfur acceptor and that it utilizes thiosulfate inefficiently as a sulfur donor. The active site exposure and its interaction with thioredoxin suggest that TSTD1 might play a role in sulfide-based signaling. The apical localization of TSTD1 in human colonic crypts, which interfaces with sulfide-releasing microbes, and the overexpression of TSTD1 in colon cancer provide potentially intriguing clues as to its role in sulfide metabolism.

摘要

硫转移酶超家族中存在结构模块硫代硝酸酶结构域。这些结构域可以作为单个单元存在,也可以串联重复存在,或者与具有其他活性的结构域融合。尽管它们在物种中广泛存在,但大多数硫转移酶的具体生理作用尚不清楚。哺乳动物硫代硝酸酶和硫代丙酮酸硫转移酶可能是该蛋白质超家族中研究最充分的成员,它们参与了硫化氢代谢。相对未被研究的人硫代硫酸盐硫转移酶样结构域 1(TSTD1)蛋白,一种单结构域细胞质硫转移酶,也被认为在使用硫代硫酸盐形成谷胱甘肽过硫酸盐的硫化物氧化途径中发挥作用,随后在线粒体基质中进行处理。先前在 pH 9.2 下对 TSTD1 进行了动力学分析,这引起了对 TSTD1 功能的相关性和提出的模型的质疑。在这项研究中,我们报告了人 TSTD1 的 1.04 Å分辨率晶体结构,该结构显示了一个暴露的活性位点,与硫代硝酸酶和硫代丙酮酸硫转移酶不同。与一系列硫供体和受体的动力学研究表明,TSTD1 对硫氧还蛋白作为硫烷硫受体的表现出低 Km 值,并且作为硫供体时对硫代硫酸盐的利用率较低。活性位点的暴露及其与硫氧还蛋白的相互作用表明,TSTD1 可能在基于硫化物的信号转导中发挥作用。TSTD1 在人结肠隐窝中的顶端定位与释放硫化物的微生物相接口,以及 TSTD1 在结肠癌中的过度表达,为其在硫化物代谢中的作用提供了潜在的有趣线索。

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