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Nucleocapsid and Matrix Protein Contributions to Selective Human Immunodeficiency Virus Type 1 Genomic RNA Packaging

机译:Nucleocapsid和基质蛋白对选择性人类免疫缺陷病毒1型基因组RNA包装的贡献

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摘要

The nucleocapsid protein (NC) of retroviruses plays a major role in genomic RNA packaging, and some evidence has implicated the matrix protein (MA) of certain retroviruses in viral RNA binding. To further investigate the role of NC in the selective recognition of genomic viral RNA and to address the potential contribution of MA in this process, we constructed chimeric and deletion human immunodeficiency virus type 1 (HIV-1) mutants that alter the NC or MA protein. Both HIV and mouse mammary tumor virus (MMTV) NC proteins have two zinc-binding domains and similar basic amino acid compositions but differ substantially in total length, amino acid sequence, and spacing of the zinc-binding motifs. When the entire NC coding sequence of HIV was replaced with the MMTV NC coding sequence, we found that the HIV genome was incorporated into virions at 50% of wild-type levels. Viruses produced from chimeric HIV genomes with complete NC replacements, or with the two NC zinc-binding domains replaced with MMTV sequences, preferentially incorporated HIV genomes when both HIV and MMTV genomes were simultaneously present in the cell. Viruses produced from chimeric MMTV genomes in which the MMTV NC had been replaced with HIV NC preferentially incorporated MMTV genomes when both HIV and MMTV genomes were simultaneously present in the cell. In contrast, viruses produced from chimeric HIV genomes containing the Moloney NC, which contains a single zinc-binding motif, were previously shown to preferentially incorporate Moloney genomic RNA. Taken together, these results indicate that an NC protein with two zinc-binding motifs is required for specific HIV RNA packaging and that the amino acid context of these motifs, while contributing to the process, is less crucial for specificity. The data also suggest that HIV NC may not be the exclusive determinant of RNA selectivity. Analysis of an HIV MA mutant revealed that specific RNA packaging does not require MA protein.
机译:逆转录病毒的核衣壳蛋白(NC)在基因组RNA包装中起主要作用,一些证据表明某些逆转录病毒的基质蛋白(MA)与病毒RNA结合。为了进一步研究NC在选择性识别基因组病毒RNA中的作用并解决MA在这一过程中的潜在作用,我们构建了嵌合的和缺失的人类免疫缺陷病毒1型(HIV-1)突变体,它们改变了NC或MA蛋白。 HIV和小鼠乳腺肿瘤病毒(MMTV)NC蛋白都具有两个锌结合结构域和相似的碱性氨基酸组成,但锌结合基序的全长,氨基酸序列和间隔有很大不同。当用MMTV NC编码序列替换HIV的整个NC编码序列时,我们发现HIV基因组以野生型水平的50%掺入病毒体中。当HIV和MMTV基因组同时存在于细胞中时,由嵌合的HIV基因组产生的病毒具有完整的NC替换,或两个NC锌结合结构域被MMTV序列替换,因此优先掺入HIV基因组。当HIV和MMTV基因组同时存在于细胞中时,由嵌合MMTV基因组产生的病毒(其中MMTV NC已被HIV NC取代)优先掺入MMTV基因组。相比之下,先前显示从包含Moloney NC的嵌合HIV基因组产生的病毒,其中Moloney NC包含单个锌结合基序,优先结合Moloney基因组RNA。综上所述,这些结果表明具有两个锌结合基序的NC蛋白对于特定的HIV RNA包装是必需的,而这些基序的氨基酸背景(虽然有助于该过程)对特异性的重要性不高。数据还表明,HIV NC可能不是RNA选择性的唯一决定因素。对HIV MA突变体的分析表明,特定的RNA包装不需要MA蛋白。

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