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Stimulation of picornavirus replication by the poly(A) tail in a cell-free extract is largely independent of the poly(A) binding protein (PABP)

机译:无细胞提取物中的poly(A)尾部刺激小核糖核酸病毒复制在很大程度上与poly(A)结合蛋白(PABP)无关

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摘要

Picornavirus infectivity is dependent on the RNA poly(A) tail, which binds the poly(A) binding protein (PABP). PABP was reported to stimulate viral translation and RNA synthesis. Here, we studied encephalomyocarditis virus (EMCV) and poliovirus (PV) genome expression in Krebs-2 and HeLa cell-free extracts that were drastically depleted of PABP (96%-99%). Although PABP depletion markedly diminished EMCV and PV internal ribosome entry site (IRES)-mediated translation of a polyadenylated luciferase mRNA, it displayed either no (EMCV) or slight (PV) deleterious effect on the translation of the full-length viral RNAs. Moreover, PABP-depleted extracts were fully competent in supporting EMCV and PV RNA replication and virus assembly. In contrast, removing the poly(A) tail from EMCV RNA dramatically reduced RNA synthesis and virus yields in cell-free reactions. The advantage conferred by the poly(A) tail to EMCV synthesis was more pronounced in untreated than in nuclease-treated extract, indicating that endogenous cellular mRNAs compete with the viral RNA for a component(s) of the RNA replication machinery. These results suggest that the poly(A) tail functions in picornavirus replication largely independent of PABP.
机译:微小RNA病毒的感染力取决于RNA poly(A)尾巴,该尾巴结合poly(A)结合蛋白(PABP)。据报道,PABP刺激病毒翻译和RNA合成。在这里,我们研究了Krebs-2和HeLa无细胞提取物中的脑心肌炎病毒(EMCV)和脊髓灰质炎病毒(PV)基因组表达,这些提取物中的PABP大量减少(96%-99%)。虽然PABP耗竭显着减少了EMCV和PV内部核糖体进入位点(IRES)介导的多腺苷酸荧光素酶mRNA的翻译,但它对全长病毒RNA的翻译没有显示(EMCV)或轻微(PV)有害的作用。此外,PABP耗尽的提取物完全有能力支持EMCV和PV RNA复制以及病毒装配。相比之下,从EMCV RNA中去除poly(A)尾巴会大大减少无细胞反应中的RNA合成和病毒产量。与未经核酸酶处理的提取物相比,未处理的poly(A)尾赋予EMCV合成的优势更为明显,表明内源性细胞mRNA与病毒RNA竞争RNA复制机制的一个或多个成分。这些结果表明,小核糖核酸病毒复制中的poly(A)尾部功能很大程度上独立于PABP。

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