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Direct Inhibition of Tombusvirus Plus-Strand RNA Synthesis by a Dominant Negative Mutant of a Host Metabolic Enzyme, Glyceraldehyde-3-Phosphate Dehydrogenase, in Yeast and Plants▿

机译:酵母和植物中宿主代谢酶的主要负突变体,甘油醛-3-磷酸脱氢酶的显性负突变体直接抑制Tombusvirus Plus链RNA的合成▿

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摘要

The replication of plus-strand RNA viruses depends on many cellular factors. Glyceraldehyde-3-phosphate dehydrogenase (GAPDH) is an abundant metabolic enzyme that is recruited to the replicase complex of Tomato bushy stunt virus (TBSV) and affects asymmetric viral RNA synthesis. To further our understanding on the role of GAPDH in TBSV replication, we used an in vitro TBSV replication assay based on recombinant p33 and p92pol viral replication proteins and cell-free yeast extract. We found that the addition of purified recombinant GAPDH to the cell extract prepared from GAPDH-depleted yeast results in increased plus-strand RNA synthesis and asymmetric production of viral RNAs. Our data also demonstrate that GAPDH interacts with p92pol viral replication protein, which may facilitate the recruitment of GAPDH into the viral replicase complex in the yeast model host. In addition, we have identified a dominant negative mutant of GAPDH, which inhibits RNA synthesis and RNA recruitment in vitro. Moreover, this mutant also exhibits strong suppression of tombusvirus accumulation in yeast and in virus-infected Nicotiana benthamiana. Overall, the obtained data support the model that the co-opted GAPDH plays a direct role in TBSV replication by stimulating plus-strand synthesis by the viral replicase.
机译:正链RNA病毒的复制取决于许多细胞因素。 3-磷酸​​甘油醛脱氢酶(GAPDH)是一种丰富的代谢酶,被募集到番茄浓密特技病毒(TBSV)的复制酶复合物中,并影响不对称病毒RNA的合成。为了进一步了解GAPDH在TBSV复制中的作用,我们使用了基于重组p33和p92pol病毒复制蛋白以及无细胞酵母提取物的体外TBSV复制测定法。我们发现,将纯化的重组GAPDH添加到由GAPDH耗竭的酵母制备的细胞提取物中会导致正链RNA合成增加和病毒RNA的不对称产生。我们的数据还证明GAPDH与p92pol病毒复制蛋白相互作用,这可能有助于将GAPDH募集到酵母模型宿主中的病毒复制酶复合物中。此外,我们已经确定了GAPDH的显性负突变体,该突变体在体外抑制RNA合成和RNA募集。此外,该突变体还表现出对酵母和病毒感染的本氏烟草中的弓形病毒积累的强烈抑制。总体而言,获得的数据支持了模型,即通过刺激病毒复制酶的正链合成,共同选择的GAPDH在TBSV复制中起直接作用。

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