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Truncated yet functional viral protein produced via RNA polymerase slippage implies underestimated coding capacity of RNA viruses

机译:通过RNA聚合酶滑移产生的截短而功能正常的病毒蛋白意味着RNA病毒的编码能力被低估了

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摘要

RNA viruses use various strategies to condense their genetic information into small genomes. Potyviruses not only use the polyprotein strategy, but also embed an open reading frame, pipo, in the P3 cistron in the –1 reading frame. PIPO is expressed as a fusion protein with the N-terminal half of P3 (P3N-PIPO) via transcriptional slippage of viral RNA-dependent RNA polymerase (RdRp). We herein show that clover yellow vein virus (ClYVV) produces a previously unidentified factor, P3N-ALT, in the +1 reading frame via transcriptional slippage at a conserved G1–2A6–7 motif, as is the case for P3N-PIPO. The translation of P3N-ALT terminates soon, and it is considered to be a C-terminal truncated form of P3. In planta experiments indicate that P3N-ALT functions in cell-to-cell movement along with P3N-PIPO. Hence, all three reading frames are used to produce functional proteins. Deep sequencing of ClYVV RNA from infected plants endorses the slippage by viral RdRp. Our findings unveil a virus strategy that optimizes the coding capacity.
机译:RNA病毒使用各种策略将其遗传信息浓缩为小的基因组。杯状病毒不仅使用多蛋白策略,而且还在–1阅读框的P3顺反子中嵌入了一个开放阅读框pipo。 PIPO通过病毒RNA依赖性RNA聚合酶(RdRp)的转录滑动表达为与P3的N端一半的融合蛋白(P3N-PIPO)。我们在这里显示三叶草黄静脉病毒(ClYVV)在+1阅读框中通过转录滑动在保守的G1-2A6-7基序上产生一个先前未知的因子P3N-ALT,就像P3N-PIPO的情况一样。 P3N-ALT的翻译很快终止,被认为是P3的C末端截短形式。在植物实验中,P3N-ALT与P3N-PIPO一起在细胞间运动中起作用。因此,所有三个阅读框均用于产生功能蛋白。来自受感染植物的ClYVV RNA的深测序证实了病毒RdRp的滑动。我们的发现揭示了一种可以优化编码能力的病毒策略。

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