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在体外具有改变的聚腺苷酸聚合酶活性的水疱性口炎病毒突变体。

Vesicular stomatitis virus mutant with altered polyadenylic acid polymerase activity in vitro.

作者信息

Hunt D M

出版信息

J Virol. 1983 Jun;46(3):788-99. doi: 10.1128/JVI.46.3.788-799.1983.

Abstract

In vitro RNA synthesis by purified virions of a stock of tsG16(I) was aberrant compared with that of wild-type (wt) vesicular stomatitis virus. RNA made in vitro by tsG16(I) contained a larger proportion of A residues in polyadenylic acid [poly(A)] tracts than did RNA synthesized by wt virus, tsG13(I), tsG21(II) or tsG41(IV). Experiments to determine whether the aberrant polyadenylation was correlated with the known thermolability of the tsG16(I) L protein were inconclusive. Total product RNA made by tsG16(I) was methylated to almost the same extent as wt RNA, contained the same major methylated 5' cap structure as wt RNA, and was translated as well in a reticulocyte cell-free system, yielding the same molecular weight proteins in similar ratios. Most polyadenylated [poly(A)+] RNA made by tsG16(I) was considerably larger than wt poly(A)+ RNA and richer in AMP:UMP residues; however, the protein-coding capacities of mutant and wt poly(A)+ RNAs were similar. This suggested that most mRNAs made in vitro by tsG16(I) might possess very long poly(A)+ tracts, and digestion of RNA by T1 RNase supported this. It appeared, therefore, that a virally coded component of vesicular stomatitis virus could affect polyadenylation. This could be the poly(A) polymerase itself, a protein involved in control of polyadenylation, or a protein which affects an event spatially and temporally connected with polyadenylation (such as initiation of the subsequent mRNA).

摘要

与野生型(wt)水疱性口炎病毒相比,tsG16(I)毒株的纯化病毒粒子在体外进行的RNA合成异常。tsG16(I)在体外合成的RNA在聚腺苷酸[poly(A)]片段中A残基的比例比wt病毒、tsG13(I)、tsG21(II)或tsG41(IV)合成的RNA更大。确定这种异常的聚腺苷酸化是否与tsG16(I)L蛋白已知的热稳定性相关的实验没有得出明确结论。tsG16(I)合成的总产物RNA甲基化程度与wt RNA几乎相同,含有与wt RNA相同的主要甲基化5'帽结构,并且在网织红细胞无细胞系统中翻译效果也一样,以相似的比例产生相同分子量的蛋白质。tsG16(I)合成的大多数聚腺苷酸化[poly(A)+]RNA比wt poly(A)+RNA大得多,且AMP:UMP残基更丰富;然而,突变体和wt poly(A)+RNA的蛋白质编码能力相似。这表明tsG16(I)在体外合成的大多数mRNA可能具有非常长的poly(A)+片段,T1核糖核酸酶对RNA的消化支持了这一点。因此,似乎水疱性口炎病毒的一种病毒编码成分可能会影响聚腺苷酸化。这可能是聚(A)聚合酶本身、一种参与聚腺苷酸化控制的蛋白质,或者是一种在空间和时间上影响与聚腺苷酸化相关事件(如后续mRNA的起始)的蛋白质。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/e776/256555/ac4999ec916e/jvirol00147-0121-a.jpg

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