Suppr超能文献

BST2 通过降低 LINE-1 5'UTR 的启动子活性来抑制 LINE-1 逆转录转座。

BST2 Suppresses LINE-1 Retrotransposition by Reducing the Promoter Activity of LINE-1 5' UTR.

机构信息

Institute of Virology and AIDS Research, First Hospital of Jilin Universitygrid.430605.4, Changchun, China.

Center for Pathogen Biology and Infectious Diseases, First Hospital of Jilin University, Changchun, China.

出版信息

J Virol. 2022 Jan 26;96(2):e0161021. doi: 10.1128/JVI.01610-21. Epub 2021 Nov 3.

Abstract

Endogenous retrotransposons are considered the "molecular fossils" of ancient retroviral insertions. Several studies have indicated that host factors restrict both retroviruses and retrotransposons through different mechanisms. Type 1 long interspersed elements (LINE-1 or L1) are the only active retroelements that can replicate autonomously in the human genome. A recent study reported that LINE-1 retrotransposition is potently suppressed by BST2, a host restriction factor that prevents viral release mainly by physically tethering enveloped virions (such as HIV) to the surface of producer cells. However, no endoplasmic membrane structure has been associated with LINE-1 replication, suggesting that BST2 may utilize a distinct mechanism to suppress LINE-1. In this study, we showed that BST2 is a potent LINE-1 suppressor. Further investigations suggested that BST2 reduces the promoter activity of LINE-1 5' untranslated region (UTR) and lowers the levels of LINE-1 RNA, proteins, and events during LINE-1 retrotransposition. Surprisingly, although BST2 apparently uses different mechanisms against HIV and LINE-1, two membrane-associated domains that are essential for BST2-mediated HIV tethering also proved important for BST2-induced inhibition of LINE-1 5' UTR. Additionally, by suppressing LINE-1, BST2 prevented LINE-1-induced genomic DNA damage and innate immune activation. Taken together, our data uncovered the mechanism of BST2-mediated LINE-1 suppression and revealed new roles of BST2 as a promoter regulator, genome stabilizer, and innate immune suppressor. BST2 is a potent antiviral protein that suppresses the release of several enveloped viruses, mainly by tethering the envelope of newly synthesized virions and restraining them on the surface of producer cells. In mammalian cells, there are numerous DNA elements replicating through reverse transcription, among which LINE-1 is the only retroelement that can replicate autonomously. Although LINE-1 retrotransposition does not involve the participation of a membrane structure, BST2 has been reported as an efficient LINE-1 suppressor, suggesting a different mechanism for BST2-mediated LINE-1 inhibition and a new function for BST2 itself. We found that BST2 specifically represses the promoter activity of LINE-1 5' UTR, resulting in decreased levels of LINE-1 transcription, translation, and subsequent retrotransposition. Additionally, by suppressing LINE-1 activity, BST2 maintains genome stability and regulates innate immune activation. These findings expand our understanding of BST2 and its biological significance.

摘要

内源性逆转录转座子被认为是古代逆转录病毒插入的“分子化石”。几项研究表明,宿主因素通过不同的机制限制逆转录病毒和逆转录转座子。I 型长散布元件(LINE-1 或 L1)是唯一能够自主复制的活性逆转录元件。最近的一项研究报告称,LINE-1 逆转录转座被宿主限制因子 BST2 强烈抑制,BST2 主要通过将包膜病毒(如 HIV)物理束缚在产生细胞的表面来阻止病毒释放。然而,尚未发现与 LINE-1 复制相关的内体膜结构,这表明 BST2 可能利用一种独特的机制来抑制 LINE-1。在这项研究中,我们表明 BST2 是一种有效的 LINE-1 抑制剂。进一步的研究表明,BST2 降低了 LINE-1 5'UTR 的启动子活性,并降低了 LINE-1 RNA、蛋白质和 LINE-1 逆转录转座过程中的水平。令人惊讶的是,尽管 BST2 显然针对 HIV 和 LINE-1 采用了不同的机制,但对 BST2 介导的 HIV 固定至关重要的两个膜相关结构域对于 BST2 诱导的 LINE-1 5'UTR 抑制也很重要。此外,通过抑制 LINE-1,BST2 防止了 LINE-1 诱导的基因组 DNA 损伤和先天免疫激活。总之,我们的数据揭示了 BST2 介导的 LINE-1 抑制的机制,并揭示了 BST2 作为启动子调节剂、基因组稳定剂和先天免疫抑制剂的新作用。BST2 是一种有效的抗病毒蛋白,可通过束缚新合成的病毒包膜并将其束缚在产生细胞的表面上来抑制几种包膜病毒的释放。在哺乳动物细胞中,有许多通过逆转录复制的 DNA 元件,其中 LINE-1 是唯一能够自主复制的逆转录元件。尽管 LINE-1 逆转录转座不涉及膜结构的参与,但 BST2 已被报道为一种有效的 LINE-1 抑制剂,这表明 BST2 介导的 LINE-1 抑制有不同的机制,BST2 本身也有新的功能。我们发现 BST2 特异性地抑制 LINE-1 5'UTR 的启动子活性,导致 LINE-1 转录、翻译和随后的逆转录转座水平降低。此外,通过抑制 LINE-1 的活性,BST2 维持基因组稳定性并调节先天免疫激活。这些发现扩展了我们对 BST2 及其生物学意义的理解。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/7247/8791264/e8282064b03e/jvi.01610-21-f001.jpg

文献AI研究员

20分钟写一篇综述,助力文献阅读效率提升50倍。

立即体验

用中文搜PubMed

大模型驱动的PubMed中文搜索引擎

马上搜索

文档翻译

学术文献翻译模型,支持多种主流文档格式。

立即体验