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通过聚类电荷到丙氨酸诱变和瞬时显性选择分离的病毒mRNA加帽酶中温度敏感痘苗病毒突变体的分析。

Analysis of a temperature-sensitive vaccinia virus mutant in the viral mRNA capping enzyme isolated by clustered charge-to-alanine mutagenesis and transient dominant selection.

作者信息

Hassett D E, Lewis J I, Xing X, DeLange L, Condit R C

机构信息

Department of Molecular Genetics and Microbiology, University of Florida, Gainesville 32610, USA.

出版信息

Virology. 1997 Nov 24;238(2):391-409. doi: 10.1006/viro.1997.8820.

Abstract

We have previously reported the successful development of a targeted genetic method for the creation of temperature-sensitive vaccinia virus mutants [D. E. Hassett and R. C. Condit (1994) Proc. Natl. Acad. Sci. USA 91, 4554-4558]. This method has now been applied to the large subunit of the multifunctional vaccinia virus capping enzyme, encoded by gene D1R. Ten clustered charge-to-alanine mutations were created in a cloned copy of D1R. Four of these mutations were successfully transferred into the viral genome using transient dominant selection, and each of these four mutations yielded viruses with plaque phenotypes different from that of wild-type virus. Two of the mutant viruses, 516 and 793, were temperature sensitive in a plaque assay. Mutant 793 was also temperature sensitive in a one-step growth experiment. Phenotypic characterization of the 793 virus under both permissive and nonpermissive conditions revealed nearly normal patterns of viral protein and mRNA synthesis. Under nonpermissive conditions the 793 virus was defective in telomere resolution and blocked at an intermediate stage of viral morphogenesis. In vitro assays of various capping enzyme activities revealed that in permeabilized virions, enzyme guanylylate intermediate formation was reduced and methyltransferase activity was thermolabile, while in solubilized virion extracts enzyme guanylylate activity was reduced and both guanylyltransferase and methyltransferase activities were absent. Thus, the 793 mutation affects at least two separate enzymatic activities of the capping enzyme, guanylyltransferase and methyltransferase, and when incorporated into the virus genome, the mutation yields a virus that is temperature sensitive for growth, telomere resolution, and virion morphogenesis.

摘要

我们之前报道过成功开发出一种靶向基因方法,用于创建温度敏感型痘苗病毒突变体[D. E. 哈西特和R. C. 康迪特(1994年),《美国国家科学院院刊》91卷,第4554 - 4558页]。该方法现已应用于由基因D1R编码的多功能痘苗病毒加帽酶的大亚基。在D1R的克隆拷贝中创建了十个成簇的电荷到丙氨酸突变。其中四个突变通过瞬时显性选择成功转移到病毒基因组中,这四个突变产生的病毒的噬斑表型均与野生型病毒不同。两种突变病毒516和793在噬斑试验中表现出温度敏感性。突变体793在一步生长实验中也表现出温度敏感性。对793病毒在允许和非允许条件下的表型特征进行分析,发现病毒蛋白和mRNA合成模式几乎正常。在非允许条件下,793病毒在端粒解析方面存在缺陷,并在病毒形态发生的中间阶段受阻。对各种加帽酶活性的体外测定表明,在透化的病毒粒子中,酶鸟苷酸中间产物的形成减少,甲基转移酶活性对温度敏感,而在溶解的病毒粒子提取物中,酶鸟苷酸活性降低,鸟苷酸转移酶和甲基转移酶活性均缺失。因此,793突变至少影响加帽酶的两种独立酶活性,即鸟苷酸转移酶和甲基转移酶,当该突变整合到病毒基因组中时,产生的病毒在生长、端粒解析和病毒粒子形态发生方面表现出温度敏感性。

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