Department of Chemistry, United States Naval Academy, Annapolis, MD 21402, USA.
Basic Science Program, Frederick National Laboratory for Cancer Research, SAXS Core Facility of the National Cancer Institute, Frederick, MD 21702, USA.
J Mol Biol. 2020 Dec 4;432(24):166711. doi: 10.1016/j.jmb.2020.11.010. Epub 2020 Nov 14.
Expression of the Human Endogenous Retrovirus Type K (HERV-K), the youngest and most active HERV, has been associated with various cancers and neurodegenerative diseases. As in all retroviruses, a fraction of HERV-K transcripts is exported from the nucleus in unspliced or incompletely spliced forms to serve as templates for translation of viral proteins. In a fraction of HERV-K loci (Type 2 proviruses), nuclear export of the unspliced HERV-K mRNA appears to be mediated by a cis-acting signal on the mRNA, the RcRE, and the protein Rec-these are analogous to the RRE-Rev system in HIV-1. Interestingly, the HIV-1 Rev protein is able to mediate the nuclear export of the HERV-K RcRE, contributing to elevated HERV-K expression in HIV-infected patients. We aimed to understand the structural basis for HIV Rev-HERV-K RcRE recognition. We examined the conformation of the RcRE RNA in solution using small-angle X-ray scattering (SAXS) and atomic force microscopy (AFM). We found that the 433-nt long RcRE can assume folded or extended conformations as observed by AFM. SAXS analysis of a truncated RcRE variant revealed an "A"-shaped topological structure similar to the one previously reported for the HIV-1 RRE. The effect of the overall topology was examined using several deletion variants. SAXS and biochemical analyses demonstrated that the "A" shape is necessary for efficient Rev-RcRE complex formation in vitro and nuclear export activity in cell culture. The findings provide insight into the mechanism of HERV-K expression and a structural explanation for HIV-1 Rev-mediated expression of HERV-K in HIV-infected patients. IMPORTANCE: Expression of the human endogenous retrovirus type K (HERV-K) has been associated with various cancers and autoimmune diseases. Nuclear export of both HIV-1 and HERV-K mRNAs is dependent on the interaction between a small viral protein (Rev in HIV-1 and Rec in HERV-K) and a region on the mRNA (RRE in HIV-1 and RcRE in HERV-K). HIV-1 Rev is able to mediate the nuclear export of RcRE-containing HERV-K mRNAs, which contributes to elevated production of HERV-K proteins in HIV-infected patients. We report the solution conformation of the RcRE RNA-the first three-dimensional topological structure for a HERV molecule-and find that the RcRE resembles the HIV-1 nuclear export signal, RRE. The finding reveals the structural basis for the increased HERV-K expression observed in HIV-infected patients. Elevated HERV expression, mediated by HIV infection or other stressors, can have various HERV-related biological consequences. The findings provide structural insight for regulation of HERV-K expression.
人类内源性逆转录病毒 K 型(HERV-K)的表达与各种癌症和神经退行性疾病有关。与所有逆转录病毒一样,HERV-K 的转录本中有一部分以未剪接或不完全剪接的形式从核内输出,作为翻译病毒蛋白的模板。在 HERV-K 基因座的一部分(2 型前病毒)中,未剪接的 HERV-K mRNA 的核输出似乎是由 mRNA 上的顺式作用信号、RcRE 和蛋白 Rec 介导的——这些与 HIV-1 中的 RRE-Rev 系统类似。有趣的是,HIV-1 Rev 蛋白能够介导 HERV-K RcRE 的核输出,导致 HIV 感染患者中 HERV-K 的表达升高。我们旨在了解 HIV Rev-HERV-K RcRE 识别的结构基础。我们使用小角度 X 射线散射(SAXS)和原子力显微镜(AFM)研究了 RcRE RNA 在溶液中的构象。我们发现,433nt 长的 RcRE 可以通过 AFM 观察到折叠或伸展构象。对截短的 RcRE 变体的 SAXS 分析显示出一种“ A”形拓扑结构,与之前报道的 HIV-1 RRE 相似。使用几种缺失变体检查了整体拓扑结构的影响。SAXS 和生化分析表明,“ A”形对于体外 Rev-RcRE 复合物的形成和细胞培养中的核输出活性是必需的。研究结果为 HERV-K 的表达机制提供了深入的了解,并为 HIV-1 Rev 介导的 HIV 感染患者中 HERV-K 的表达提供了结构解释。重要性:人类内源性逆转录病毒 K 型(HERV-K)的表达与各种癌症和自身免疫性疾病有关。HIV-1 和 HERV-K mRNA 的核输出都依赖于小病毒蛋白(HIV-1 中的 Rev 和 HERV-K 中的 Rec)与 mRNA 上的区域(HIV-1 中的 RRE 和 HERV-K 中的 RcRE)之间的相互作用。HIV-1 Rev 能够介导含有 RcRE 的 HERV-K mRNA 的核输出,这导致 HIV 感染患者中 HERV-K 蛋白的产量升高。我们报告了 RcRE RNA 的溶液构象——这是第一个 HERV 分子的三维拓扑结构——并发现 RcRE 类似于 HIV-1 核输出信号 RRE。该发现揭示了在 HIV 感染患者中观察到的 HERV-K 表达增加的结构基础。由 HIV 感染或其他应激源介导的 HERV 表达增加会产生各种与 HERV 相关的生物学后果。该研究结果为 HERV-K 表达的调控提供了结构见解。