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Mutation of a C-Terminal Motif Affects Kaposi’s Sarcoma-Associated Herpesvirus ORF57 RNA Binding, Nuclear Trafficking, and Multimerization

机译:C端基序的突变影响卡波西氏肉瘤相关疱疹病毒ORF57 RNA结合,核贩运和多聚化

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摘要

The Kaposi's sarcoma-associated herpesvirus (KSHV) ORF57 protein is essential for virus lytic replication. ORF57 regulates virus gene expression at multiple levels, enhancing transcription, stability, nuclear export, and translation of viral transcripts. To enhance the nuclear export of viral intronless transcripts, ORF57 (i) binds viral intronless mRNAs, (ii) shuttles between the nucleus, nucleolus, and the cytoplasm, and (iii) interacts with multiple cellular nuclear export proteins to access the TAP-mediated nuclear export pathway. We investigated the implications on the subcellular trafficking, cellular nuclear export factor recruitment, and ultimately nuclear mRNA export of an ORF57 protein unable to bind RNA. We observed that mutation of a carboxy-terminal RGG motif, which prevents RNA binding, affects the subcellular localization and nuclear trafficking of the ORF57 protein, suggesting that it forms subnuclear aggregates. Further analysis of the mutant shows that although it still retains the ability to interact with cellular nuclear export proteins, it is unable to export viral intronless mRNAs from the nucleus. Moreover, computational molecular modeling and biochemical studies suggest that, unlike the wild-type protein, this mutant is unable to self-associate. Therefore, these results suggest the mutation of a carboxy-terminal RGG motif affects ORF57 RNA binding, nuclear trafficking, and multimerization.
机译:卡波济氏肉瘤相关疱疹病毒(KSHV)ORF57蛋白对于病毒裂解复制至关重要。 ORF57在多个水平上调节病毒基因的表达,从而增强转录,稳定性,核输出和病毒转录本的翻译。为了增强病毒无内含子转录本的核输出,ORF57(i)结合病毒无内含子mRNA,(ii)核,核仁和细胞质之间的穿梭,并且(iii)与多种细胞核输出蛋白相互作用以访问TAP介导的核出口途径。我们调查了对无法结合RNA的ORF57蛋白的亚细胞运输,细胞核输出因子募集以及最终核mRNA输出的影响。我们观察到,羧基末端RGG基序的突变可阻止RNA结合,影响ORF57蛋白的亚细胞定位和核运输,这表明它形成了亚核聚集体。对该突变体的进一步分析表明,尽管它仍然保留了与细胞核输出蛋白相互作用的能力,但它无法从细胞核中输出无病毒内含子的mRNA。此外,计算分子建模和生化研究表明,与野生型蛋白不同,该突变体无法自我缔合。因此,这些结果表明,羧基末端RGG基序的突变会影响ORF57 RNA结合,核转运和多聚化。

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