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New insights into the nuclear localization of retroviral gag proteins

机译:逆转录病毒gag蛋白的核定位的新见解

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Retroviruses assemble new virus particles that are released by budding from the plasma membranes of infected cells.?Gag proteins, encoded by retroviruses, orchestrate the assembly of virus particles in close collaboration with host cell machinery. The earliest steps in retrovirus assembly—those immediately following synthesis of Gag on cytosolic ribosomes—are poorly understood.?Rous sarcoma virus (RSV) offers a unique model system for dissecting these early steps because the RSV Gag protein undergoes transient nuclear trafficking prior to plasma membrane transport.?Other Gag proteins, including those of human immunodeficiency virus (HIV), murine leukemia virus (MLV), foamy virus, and retrotransposons in Schizosaccharomyces pombe and Drosophila , have also been detected in the nucleus, suggesting that nuclear trafficking of Gag proteins is a common property of retroviruses and retrotransposons.?In addition to retroviruses, many structural proteins of unrelated viruses, including influenza M1, NEP and NP proteins, Borna disease virus N and P proteins?and coronavirus N protein, undergo nuclear localization and bind viral RNAs to form viral ribonuclear protein (RNP) complexes that are exported from the nucleus for packaging into virus particles. Similarly, nuclear trafficking of the RSV Gag protein is required for efficient encapsidation of the viral genomic RNA (gRNA) into assembling virus particles.?Recently, we reported that the viral RNA itself appears to be a key factor in controlling the nucleus/cytosol distribution of RSV Gag.?Our data demonstrate that binding of RSV RNA to the Gag protein promotes Gag-CRM1-RanGTP binding, resulting in export of the retroviral RNP from the nucleus.?We propose that association of the viral RNA induces a conformational change in Gag that reveals its nuclear export signal (NES) and prepares that complex for its journey to the plasma membrane for budding.?This work challenges existing dogmas regarding the molecular basis of Gag-mediated selection of gRNA for packaging and may lead to novel paradigms for the mechanism of retroviral genome encapsidation.
机译:逆转录病毒装配了新的病毒颗粒,这些颗粒通过从受感染细胞的质膜上发芽而释放。逆转录病毒编码的Gag蛋白与宿主细胞机制密切协作,协调了病毒颗粒的装配。逆转录病毒组装的最早步骤-在胞质核糖体上合成Gag之后立即进行的-人们对此知之甚少。鲁氏肉瘤病毒(RSV)为解剖这些早期步骤提供了独特的模型系统,因为RSV Gag蛋白在血浆之前经历了短暂的核运输。还可以在细胞核中检测到其他Gag蛋白,​​包括人免疫缺陷病毒(HIV),鼠白血病病毒(MLV),泡沫病毒和果蝇嗜酒菌和果蝇中的反转录转座子。这表明逆转录病毒和逆转录转座子的共同特性是Gag蛋白的核转运。除了逆转录病毒外,许多无关病毒的结构蛋白,包括M1型流感病毒,NEP和NP蛋白,博尔纳病病毒N和P蛋白以及冠状病毒N蛋白。 ,经过核定位并结合病毒RNA形成病毒核糖核蛋白(RNP)复合物,该复合物从细胞核输出并包装在去病毒颗粒。同样,RSV Gag蛋白的核运输是病毒基因组RNA(gRNA)有效衣壳化到组装病毒颗粒中所必需的。最近,我们报道病毒RNA本身似乎是控制核/胞质分布的关键因素。我们的数据表明RSV RNA与Gag蛋白的结合会促进Gag-CRM1-RanGTP结合,从而导致逆转录病毒RNP从细胞核中输出。我们建议病毒RNA的结合可诱导RNA构象变化。 Gag揭示了其核输出信号(NES),并为该复合物进入质膜的出芽做好了准备。这项工作挑战了有关Gag介导的包装gRNA选择分子基础的现有教条,并可能导致新的范式逆转录病毒基因组衣壳化的机制。

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