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人类系统性RNA干扰缺陷跨膜蛋白1(hSIDT1)的结构揭示了其脂质结合结构域的构象灵活性。

Structure of the human systemic RNAi defective transmembrane protein 1 (hSIDT1) reveals the conformational flexibility of its lipid binding domain.

作者信息

Navratna Vikas, Kumar Arvind, Rana Jaimin K, Mosalaganti Shyamal

机构信息

Life Sciences Institute, University of Michigan, Ann Arbor, Michigan, 48109, United States.

Department of Cell and Developmental Biology, University of Michigan, Ann Arbor, Michigan, 48109, United States.

出版信息

bioRxiv. 2024 Jun 12:2023.12.21.572875. doi: 10.1101/2023.12.21.572875.

Abstract

In , inter-cellular transport of the small non-coding RNA causing systemic RNA interference (RNAi) is mediated by the transmembrane protein SID1, encoded by the gene in the systemic RNA interference-defective () loci. SID1 shares structural and sequence similarity with cholesterol uptake protein 1 (CHUP1) and is classified as a member of the cholesterol uptake family (ChUP). Although systemic RNAi is not an evolutionarily conserved process, the gene products are found across the animal kingdom, suggesting the existence of other novel gene regulatory mechanisms mediated by small non-coding RNAs. Human homologs of gene products - hSIDT1 and hSIDT2 - mediate contact-dependent lipophilic small non-coding dsRNA transport. Here, we report the structure of recombinant human SIDT1. We find that the extra-cytosolic domain (ECD) of hSIDT1 adopts a double jelly roll fold, and the transmembrane domain (TMD) exists as two modules - a flexible lipid binding domain (LBD) and a rigid TMD core. Our structural analyses provide insights into the inherent conformational dynamics within the lipid binding domain in cholesterol uptake (ChUP) family members.

摘要

在植物中,导致系统性RNA干扰(RNAi)的小非编码RNA的细胞间运输由跨膜蛋白SID1介导,该蛋白由系统性RNA干扰缺陷(sid)位点中的sid基因编码。SID1与胆固醇摄取蛋白1(CHUP1)具有结构和序列相似性,被归类为胆固醇摄取家族(ChUP)的成员。尽管系统性RNAi不是一个进化上保守的过程,但sid基因产物在整个动物界都能找到,这表明存在由小非编码RNA介导的其他新型基因调控机制。sid基因产物的人类同源物——hSIDT1和hSIDT2——介导接触依赖性亲脂性小非编码双链RNA的运输。在这里,我们报告了重组人SIDT1的结构。我们发现,hSIDT1的胞外结构域(ECD)采用双果冻卷折叠,跨膜结构域(TMD)以两个模块的形式存在——一个灵活的脂质结合结构域(LBD)和一个刚性的TMD核心。我们的结构分析为胆固醇摄取(ChUP)家族成员脂质结合结构域内固有的构象动力学提供了见解。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/019a/11181393/591cd04144e7/nihpp-2023.12.21.572875v2-f0001.jpg

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