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Features, processing states and heterologous protein interactions in the modulation of the retroviral nucleocapsid protein function

机译:逆转录病毒核衣壳蛋白功能调节中的特征,加工状态和异源蛋白相互作用

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摘要

Nucleocapsid (NC) is central to retroviral replication. Nucleic acid chaperoning is a key function for NC through the action of its conserved basic amino acids and zinc-finger structures. NC manipulates genomic RNA from its packaging in the producer cell to reverse transcription into the infected host cell. This chaperone function, in conjunction with NCs aggregating properties, is up-modulated by successive NC processing events, from the Gag precursor to the fully mature protein, resulting in the condensation of the nucleocapsid within the capsid shell. Reverse transcription also depends on NC processing, whereas this process provokes NC dissociation from double-stranded DNA, leading to a preintegration complex (PIC), competent for host chromosomal integration. In addition NC interacts with cellular proteins, some of which are involved in viral budding, and also with several viral proteins. All of these properties are reviewed here, focusing on HIV-1 as a paradigmatic reference and highlighting the plasticity of the nucleocapsid architecture.
机译:核仁(NC)是逆转录病毒复制的核心。核酸伴侣通过其保守的碱性氨基酸和锌指结构的作用是NC的关键功能。 NC操纵生产者细胞包装中的基因组RNA逆转录到感染的宿主细胞中。该分子伴侣功能与NC的聚集特性一起,通过连续的NC处理事件(从Gag前体到完全成熟的蛋白质)被上调,从而导致衣壳内的核衣壳缩合。逆转录也依赖于NC处理,而此过程会引起双链DNA的NC解离,从而导致预整合复合物(PIC)能够胜任宿主染色体整合。另外,NC与细胞蛋白相互作用,其中一些与病毒出芽有关,还与几种病毒蛋白相互作用。本文对所有这些特性进行了综述,重点关注HIV-1作为范例参考,并强调了核衣壳结构的可塑性。

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