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辛德毕斯病毒RNA温度敏感突变体的定位:互补组F突变体在非结构蛋白4(nsP4)中有损伤。

Mapping of RNA- temperature-sensitive mutants of Sindbis virus: complementation group F mutants have lesions in nsP4.

作者信息

Hahn Y S, Grakoui A, Rice C M, Strauss E G, Strauss J H

机构信息

Division of Biology, California Institute of Technology, Pasadena 91125.

出版信息

J Virol. 1989 Mar;63(3):1194-202. doi: 10.1128/JVI.63.3.1194-1202.1989.

Abstract

Temperature-sensitive (ts) mutants of Sindbis virus belonging to complementation group F, ts6, ts110, and ts118, are defective in RNA synthesis at the nonpermissive temperature. cDNA clones of these group F mutants, as well as of ts+ revertants, have been constructed. To assign the ts phenotype to a specific region in the viral genome, restriction fragments from the mutant cDNA clones were used to replace the corresponding regions of the full-length clone Toto1101 of Sindbis virus. These hybrid plasmids were transcribed in vitro by SP6 RNA polymerase to produce infectious transcripts, and the virus recovered was tested for temperature sensitivity. After the ts lesion of each mutant was mapped to a specific region of 400 to 800 nucleotides by this approach, this region of the cDNA clones of both the ts mutant and ts+ revertants was sequenced in order to determine the precise nucleotide change and amino acid substitution responsible for each mutation. Rescued mutants, which have a uniform background except for one or two defined changes, were examined for viral RNA synthesis and complementation to show that the phenotypes observed were the result of the mutations mapped. ts6 and ts110 had a single base substitution in nsP4, resulting in replacement of Gly by Glu at position 153 or position 324, respectively. It is of interest that nsP4 contains the Gly-Asp-Asp motif characteristic of a number of viral replicases, and this, together with the fact that all RNA synthesis in ts6-infected cells and, to a lesser extent, in ts110-infected cells shut off when the cells were shifted from a permissive to a nonpermissive temperature, suggests that nsP4 is the virus polymerase. ts118 was a double mutant. It contained a single base substitution in nsP2, resulting in replacement of Val by Ala at position 425 that resulted in the formation of minute plaques, but not in a reduction in the plaque number at the nonpermissive condition. The second change, a substitution of Gln by Arg in ts118 at residue 93 in nsP4, had little apparent phenotype on its own, but in combination with the change in nsP2 led to a ts phenotype. Thus, in each case the mutation responsible for the temperature sensitivity of the three known complementation group F mutants lay in nsP4. In addition, the result with ts118 suggests that nsP2 and nsP4 may interact with each other in a complex.

摘要

属于互补组F的辛德毕斯病毒温度敏感(ts)突变体ts6、ts110和ts118在非允许温度下RNA合成存在缺陷。已经构建了这些F组突变体以及ts +回复突变体的cDNA克隆。为了将ts表型定位到病毒基因组的特定区域,使用来自突变体cDNA克隆的限制性片段替换辛德毕斯病毒全长克隆Toto1101的相应区域。这些杂交质粒通过SP6 RNA聚合酶在体外转录以产生感染性转录本,并对回收的病毒进行温度敏感性测试。通过这种方法将每个突变体的ts损伤定位到400至800个核苷酸的特定区域后,对ts突变体和ts +回复突变体的cDNA克隆的该区域进行测序,以确定导致每个突变的精确核苷酸变化和氨基酸取代。对除一两个确定变化外具有统一背景的拯救突变体进行病毒RNA合成和互补检测,以表明观察到的表型是定位突变的结果。ts6和ts110在nsP4中有一个单碱基取代,分别导致第153位或第324位的甘氨酸被谷氨酸取代。有趣的是,nsP4含有许多病毒复制酶特有的甘氨酸 - 天冬氨酸 - 天冬氨酸基序,并且这与当细胞从允许温度转变为非允许温度时ts6感染细胞中的所有RNA合成以及在较小程度上ts110感染细胞中的所有RNA合成关闭这一事实一起表明nsP4是病毒聚合酶。ts118是一个双突变体。它在nsP2中有一个单碱基取代,导致第425位的缬氨酸被丙氨酸取代,这导致形成微小噬斑,但在非允许条件下噬斑数量没有减少。第二个变化是ts118中nsP4的第93位残基的谷氨酰胺被精氨酸取代,其自身几乎没有明显表型,但与nsP2中的变化相结合导致ts表型。因此,在每种情况下,导致三个已知互补组F突变体温度敏感性的突变都位于nsP4中。此外,ts118的结果表明nsP2和nsP4可能在一个复合物中相互作用。

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