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A novel role for poly(C) binding proteins in programmed ribosomal frameshifting

机译:poly(C)结合蛋白在程序化核糖体移码中的新作用

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Translational control through programmed ribosomal frameshifting (PRF) is exploited widely by viruses and increasingly documented in cellular genes. Frameshifting is induced by mRNA secondary structures that compromise ribosome fidelity during decoding of a heptanucleotide 'slippery' sequence. The nsp2 PRF signal of porcine reproductive and respiratory syndrome virus is distinctive in directing both -2 and -1 PRF and in its requirement for a trans-acting protein factor, the viral replicase subunit nsp1 beta. Here we show that the the trans-activation of frameshifting is carried out by a protein complex composed of nsp1 beta and a cellular poly(C) binding protein (PCBP). From the results of in vitro translation and electrophoretic mobility shift assays, we demonstrate that a PCBPsp1 beta complex binds to a C-rich sequence downstream of the slippery sequence and here mimics the activity of a structured mRNA stimulator of PRF. This is the first description of a role for a trans-acting cellular protein in PRF. The discovery broadens the repertoire of activities associated with poly(C) binding proteins and prototypes a new class of virus-host interactions.
机译:通过程序核糖体移码(PRF)进行翻译控制已被病毒广泛利用,并在细胞基因中得到越来越多的记载。移码由mRNA二级结构诱导,该二级结构在七核苷酸“滑”序列的解码过程中损害了核糖体的保真度。猪繁殖与呼吸综合症病毒的nsp2 PRF信号在指导-2和-1 PRF以及对反式作用蛋白因子(病毒复制酶亚基nsp1 beta)的要求方面具有独特性。在这里,我们显示移码的反式激活是由nsp1 beta和细胞多聚(C)结合蛋白(PCBP)组成的蛋白复合物进行的。从体外翻译和电泳迁移率变动分析的结果,我们证明PCBP / nsp1 beta复合物与滑序列下游的C富集序列结合,并在此模拟PRF的结构化mRNA刺激物的活性。这是反式作用细胞蛋白在PRF中的作用的首次描述。该发现拓宽了与poly(C)结合蛋白相关的活性的范围,并为一类新型的病毒-宿主相互作用提供了原型。

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