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NleB/SseKs 同源效应物作为一种用于真核蛋白的通用细菌单糖基转移酶。

NleB/SseKs ortholog effectors as a general bacterial monoglycosyltransferase for eukaryotic proteins.

机构信息

Department of Systems Biology, College of Life Science and Biotechnology, Yonsei University, Seoul 03722, Republic of Korea.

Department of Systems Biology, College of Life Science and Biotechnology, Yonsei University, Seoul 03722, Republic of Korea.

出版信息

Curr Opin Struct Biol. 2021 Jun;68:215-223. doi: 10.1016/j.sbi.2021.02.004. Epub 2021 Mar 21.

Abstract

Protein glycosylation is the most common post-translational modification as more than 50% of all human proteins are glycosylated. Pathogenic bacteria glycosylation allows adhesion to host cells and manipulates eukaryotic functions. A variety of acceptor proteins in bacterial glycosylation was recently discovered. Especially NleB/SseKs type III effectors unexpectedly glycosylate a poor nucleophile arginine. Other pathogenic toxins modify the unusual tyrosine, as well as canonical serine/threonine residues. And a huge diversity is found in target proteins; Rho/Ras families, death domains and moreover themselves for autoglycosylation. However, in spite of this acceptor diversity, all their sugar donors are only UDP-Glc/-GlcNAc and structural alignments as liganded show their catalytic cores are geometrically conserved, where DRY and DXD motives and W residues equally position to hold the sugar donors and to π-π bind with a uridine ring, respectively. Therefore, bacterial glycosyltransferases have a key for carbohydrate research problems concerning the sugar donors and target proteins recognition.

摘要

蛋白质糖基化是最常见的翻译后修饰,超过 50%的人类蛋白都发生了糖基化。病原体的糖基化使其能够黏附宿主细胞并操纵真核生物的功能。最近发现了细菌糖基化的多种受体蛋白。特别是 NleB/SseKs 型 III 效应子出人意料地使精氨酸发生糖基化,而精氨酸是一种较差的亲核试剂。其他病原体毒素修饰了不常见的酪氨酸以及典型的丝氨酸/苏氨酸残基。在靶蛋白中发现了巨大的多样性;Rho/Ras 家族、死亡域,甚至自身进行自体糖基化。然而,尽管有这种受体多样性,它们所有的糖供体都只是 UDP-Glc/-GlcNAc,配体结合的结构比对表明它们的催化核心在几何形状上是保守的,其中 DRY 和 DXD 基序以及 W 残基分别以相同的位置来结合糖供体并通过π-π键与尿苷环结合。因此,细菌糖基转移酶是解决糖供体和靶蛋白识别相关碳水化合物研究问题的关键。

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