Department of Biological Sciences, Columbia University, New York, New York, USA.
HHMI, Columbia University Medical Center, New York, New York, USA.
J Virol. 2021 Sep 9;95(19):e0061521. doi: 10.1128/JVI.00615-21. Epub 2021 Jul 21.
The transition from an immature to a fully infectious mature retrovirus particle is associated with molecular switches that trigger dramatic conformational changes in the structure of the Gag proteins. A dominant maturation switch that stabilizes the immature capsid (CA) lattice is located downstream of the CA protein in many retroviral Gags. The HIV-1 Gag protein contains a stretch of 5 amino acid residues termed the "clasp motif," important for the organization of the hexameric subunits that provide stability to the overall immature HIV-1 shell. Sequence alignment of the CA C-terminal domains (CTDs) of HIV-1 and Mason-Pfizer monkey virus (M-PMV) highlighted a spacer-like domain in M-PMV that may provide a comparable function. The importance of the sequences spanning the CA-nucleocapsid (NC) cleavage has been demonstrated by mutagenesis, but the specific requirements for the clasp motif in several steps of M-PMV particle assembly and maturation have not been determined in detail. In the present study, we report an examination of the role of the clasp motif in the M-PMV life cycle. We generated a series of M-PMV Gag mutants and assayed for assembly of the recombinant proteins and for the assembly, maturation, release, genomic RNA packaging, and infectivity of the mutant viruses . The mutants revealed major defects in virion assembly and release in HEK 293T and HeLa cells and even larger defects in infectivity. Our data identify the clasp motif as a fundamental contributor to CA-CTD interactions necessary for efficient retroviral infection. The C-terminal domain of the capsid protein of many retroviruses has been shown to be critical for virion assembly and maturation, but the functions of this region of M-PMV are uncertain. We show that a short "clasp" motif in the capsid domain of the M-PMV Gag protein plays a key role in M-PMV virion assembly, genome packaging, and infectivity.
从不成熟到完全有感染力的成熟逆转录病毒颗粒的转变与分子开关相关,这些开关触发 Gag 蛋白结构的剧烈构象变化。许多逆转录病毒 Gag 中的一个主要成熟开关位于 CA 蛋白下游,稳定不成熟衣壳 (CA) 晶格。HIV-1 Gag 蛋白包含一段称为“扣紧模体”的 5 个氨基酸残基,对于提供稳定性的六聚体亚单位的组织很重要,这些亚单位为整个不成熟 HIV-1 壳提供稳定性。HIV-1 和 Mason-Pfizer 猴病毒 (M-PMV) 的 CA C 端结构域 (CTD) 的序列比对突出了 M-PMV 中的间隔样结构域,该结构域可能提供类似的功能。通过突变分析证明了跨越 CA-核衣壳 (NC) 切割的序列的重要性,但在 M-PMV 颗粒组装和成熟的几个步骤中,扣紧模体的具体要求尚未详细确定。在本研究中,我们报告了对 M-PMV 生命周期中扣紧模体作用的研究。我们生成了一系列 M-PMV Gag 突变体,并检测了重组蛋白的组装以及突变病毒的组装、成熟、释放、基因组 RNA 包装和感染性。突变体在 HEK 293T 和 HeLa 细胞中显示出主要的病毒体组装和释放缺陷,甚至在感染性方面的缺陷更大。我们的数据确定扣紧模体是 CA-CTD 相互作用所必需的,对于有效的逆转录病毒感染至关重要。许多逆转录病毒的衣壳蛋白的 C 端结构域已被证明对病毒体组装和成熟至关重要,但 M-PMV 该区域的功能尚不确定。我们表明,M-PMV Gag 蛋白衣壳结构域中的短“扣紧”模体在 M-PMV 病毒体组装、基因组包装和感染性中发挥关键作用。