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神秘素/RNF213 的分子结构与功能。

Molecular structure and function of mysterin/RNF213.

机构信息

Department of Biochemistry, Showa University School of Medicine, Hatanodai 1-5-8, Shinagawa, Tokyo 142-0064, Japan.

出版信息

J Biochem. 2024 Apr 29;175(5):495-505. doi: 10.1093/jb/mvae020.

Abstract

Mysterin is a large intracellular protein harboring a RING finger ubiquitin ligase domain and is also referred to as RING finger protein 213 (RNF213). The author performed the first molecular cloning of the mysterin gene as the final step in genetic exploration of cerebrovascular moyamoya disease (MMD) and initiated the next round of exploration to understand its molecular and cellular functions. Although much remains unknown, accumulating findings suggest that mysterin functions in cells by targeting massive intracellular structures, such as lipid droplets (LDs) and various invasive pathogens. In the latter case, mysterin appears to directly surround and ubiquitylate the surface of pathogens and stimulate cell-autonomous antimicrobial reactions, such as xenophagy and inflammatory response. To date, multiple mutations causing MMD have been identified within and near the RING finger domain of mysterin; however, their functional relevance remains largely unknown. Besides the RING finger, mysterin harbors a dynein-like ATPase core and an RZ finger, another ubiquitin ligase domain unique to mysterin, while functional exploration of these domains has also just commenced. In this review, the author attempts to summarize the core findings regarding the molecular structure and function of the mysterin protein, with an emphasis on the perspective of MMD research.

摘要

神秘蛋白是一种大型细胞内蛋白,具有 RING 指泛素连接酶结构域,也被称为 RING 指蛋白 213(RNF213)。作者首次对神秘蛋白基因进行了分子克隆,作为对脑血管烟雾病(MMD)遗传探索的最后一步,并启动了下一轮探索,以了解其分子和细胞功能。尽管仍有许多未知,但越来越多的发现表明,神秘蛋白通过靶向大量细胞内结构,如脂滴(LDs)和各种入侵病原体,在细胞中发挥作用。在后一种情况下,神秘蛋白似乎直接包围和泛素化病原体的表面,并刺激细胞自主的抗菌反应,如异噬作用和炎症反应。迄今为止,已在神秘蛋白的 RING 指结构域内和附近鉴定出导致 MMD 的多种突变;然而,它们的功能相关性在很大程度上仍然未知。除了 RING 指,神秘蛋白还具有类似于动力蛋白的 ATP 酶核心和 RZ 指,这是神秘蛋白特有的另一种泛素连接酶结构域,而这些结构域的功能探索也刚刚开始。在这篇综述中,作者试图总结神秘蛋白的分子结构和功能的核心发现,重点是 MMD 研究的角度。

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