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MoMuLV and HIV-1 Nucleocapsid Proteins Have a Common Role in Genomic RNA Packaging but Different in Late Reverse Transcription

机译:MoMuLV和HIV-1核衣壳蛋白在基因组RNA包装中具有共同的作用,但在后期逆转录中有所不同

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摘要

Retroviral nucleocapsid proteins harbor nucleic acid chaperoning activities that mostly rely on the N-terminal basic residues and the CCHC zinc finger motif. Such chaperoning is essential for virus replication, notably for genomic RNA selection and packaging in virions, and for reverse transcription of genomic RNA into DNA. Recent data revealed that HIV-1 nucleocapsid restricts reverse transcription during virus assembly – a process called late reverse transcription – suggesting a regulation between RNA packaging and late reverse transcription. Indeed, mutating the HIV-1 nucleocapsid basic residues or the two zinc fingers caused a reduction in RNA incorporated and an increase in newly made viral DNA in the mutant virions. MoMuLV nucleocapsid has an N-terminal basic region similar to HIV-1 nucleocapsid but a unique zinc finger. This prompted us to investigate whether the N-terminal basic residues and the zinc finger of MoMuLV and HIV-1 nucleocapsids play a similar role in genomic RNA packaging and late reverse transcription. To this end, we analyzed the genomic RNA and viral DNA contents of virions produced by cells transfected with MoMuLV molecular clones where the zinc finger was mutated or completely deleted or with a deletion of the N-terminal basic residues of nucleocapsid. All mutant virions showed a strong defect in genomic RNA content indicating that the basic residues and zinc finger are important for genomic RNA packaging. In contrast to HIV-1 nucleocapsid-mutants, the level of viral DNA in mutant MoMuLV virions was only slightly increased. These results confirm that the N-terminal basic residues and zinc finger of MoMuLV nucleocapsid are critical for genomic RNA packaging but, in contrast to HIV-1 nucleocapsid, they most probably do not play a role in the control of late reverse transcription. In addition, these results suggest that virus formation and late reverse transcription proceed according to distinct mechanisms for MuLV and HIV-1.
机译:逆转录病毒核衣壳蛋白具有主要依靠N端碱性残基和CCHC锌指基序的核酸伴侣活动。这种陪伴对于病毒复制,尤其是基因组RNA的选择和在病毒体中的包装以及基因组RNA逆转录成DNA至关重要。最近的数据显示,HIV-1核衣壳在病毒装配过程中限制了逆转录(这一过程称为逆转录),这表明在RNA包装和逆转录之间存在调控。的确,突变HIV-1核衣壳的基本残基或两个锌指导致突变病毒体中RNA的结合减少,新制备的病毒DNA增加。 MoMuLV核衣壳的N端基本区域类似于HIV-1核衣壳,但有独特的锌指。这促使我们研究MoMuLV和HIV-1核衣壳的N末端碱性残基和锌指在基因组RNA包装和后期反转录中是否起相似的作用。为此,我们分析了用MoMuLV分子克隆转染的细胞产生的病毒颗粒的基因组RNA和病毒DNA含量,其中锌指被突变或完全缺失,或核苷酸壳的N端碱性残基缺失。所有突变体病毒体均显示出基因组RNA含量的严重缺陷,表明碱性残基和锌指对基因组RNA包装很重要。与HIV-1核衣壳突变体相反,突变MoMuLV病毒粒子中病毒DNA的水平仅略有增加。这些结果证实,MoMuLV核衣壳的N端基本残基和锌指对基因组RNA包装至关重要,但是与HIV-1核衣壳相反,它们很可能在后期逆转录控制中不起作用。此外,这些结果表明病毒的形成和后期逆转录是根据MuLV和HIV-1的独特机制进行的。

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