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ZCCHC3 是一种应激颗粒锌指蛋白,能强烈抑制 LINE-1 反转录转座。

ZCCHC3 is a stress granule zinc knuckle protein that strongly suppresses LINE-1 retrotransposition.

机构信息

McKusick-Nathans Department of Genetic Medicine, Johns Hopkins University School of Medicine, Baltimore, Maryland, United States of America.

GENYO, Centre for Genomics and Oncological Research: Pfizer, University of Granada, Andalusian Regional Government, Granada, Spain.

出版信息

PLoS Genet. 2023 Jul 5;19(7):e1010795. doi: 10.1371/journal.pgen.1010795. eCollection 2023 Jul.

Abstract

Retrotransposons have generated about half of the human genome and LINE-1s (L1s) are the only autonomously active retrotransposons. The cell has evolved an arsenal of defense mechanisms to protect against retrotransposition with factors we are only beginning to understand. In this study, we investigate Zinc Finger CCHC-Type Containing 3 (ZCCHC3), a gag-like zinc knuckle protein recently reported to function in the innate immune response to infecting viruses. We show that ZCCHC3 also severely restricts human retrotransposons and associates with the L1 ORF1p ribonucleoprotein particle. We identify ZCCHC3 as a bona fide stress granule protein, and its association with LINE-1 is further supported by colocalization with L1 ORF1 protein in stress granules, dense cytoplasmic aggregations of proteins and RNAs that contain stalled translation pre-initiation complexes and form when the cell is under stress. Our work also draws links between ZCCHC3 and the anti-viral and retrotransposon restriction factors Mov10 RISC Complex RNA Helicase (MOV10) and Zinc Finger CCCH-Type, Antiviral 1 (ZC3HAV1, also called ZAP). Furthermore, collective evidence from subcellular localization, co-immunoprecipitation, and velocity gradient centrifugation connects ZCCHC3 with the RNA exosome, a multi-subunit ribonuclease complex capable of degrading various species of RNA molecules and that has previously been linked with retrotransposon control.

摘要

反转录转座子产生了约人类基因组的一半,而 LINE-1s(L1s)是唯一具有自主活性的反转录转座子。细胞已经进化出了一系列防御机制来防止反转录转座,而我们才刚刚开始了解这些防御机制中的一些因素。在这项研究中,我们研究了锌指 CCHC 型结构域 3(ZCCHC3),这是一种最近被报道在先天免疫反应中发挥作用的 gag 样锌指蛋白,能够抵抗感染病毒。我们发现 ZCCHC3 也严重限制了人类反转录转座子,并与 L1 ORF1p 核糖核蛋白颗粒相关联。我们确定 ZCCHC3 是一种真正的应激颗粒蛋白,其与 LINE-1 的关联进一步得到了 L1 ORF1 蛋白在应激颗粒中的共定位的支持,应激颗粒是蛋白质和 RNA 的密集细胞质聚集体,包含停滞的翻译起始前复合物,当细胞受到压力时就会形成。我们的工作还将 ZCCHC3 与抗病毒和反转录转座子限制因子 Mov10 RISC 复合物 RNA 解旋酶(MOV10)和锌指 CCCH 型、抗病毒 1(ZC3HAV1,也称为 ZAP)联系起来。此外,从亚细胞定位、共免疫沉淀和速度梯度离心获得的综合证据将 ZCCHC3 与 RNA 外切酶联系起来,后者是一种多亚基核糖核酸酶复合物,能够降解各种 RNA 分子,并且以前与反转录转座子的控制有关。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/839d/10351740/3bcbf0e872d7/pgen.1010795.g001.jpg

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