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表达水疱性口炎病毒M基因抗原性和温度敏感表型的载体中的位点特异性突变。

Site-specific mutations in vectors that express antigenic and temperature-sensitive phenotypes of the M gene of vesicular stomatitis virus.

作者信息

Li Y, Luo L Z, Snyder R M, Wagner R R

机构信息

Department of Microbiology, University of Virginia School of Medicine, Charlottesville 22908.

出版信息

J Virol. 1988 Oct;62(10):3729-37. doi: 10.1128/JVI.62.10.3729-3737.1988.

Abstract

Full-length cDNA copies of mRNAs coding for the matrix (M) proteins of vesicular stomatitis virus and its mutant tsO23(III) were cloned in pBSM13- (BlueScribe). The authenticity of these clones was demonstrated by restriction enzyme mapping, DNA sequencing, and in vitro transcription and translation to identify the two M proteins by Western immunoblotting with epitope-specific monoclonal antibodies. Site-directed mutants were constructed by primer extension of synthetic oligodeoxynucleotides with one or two nucleotide changes to alter the glycine at amino acid 21 of the wild-type (wt) M gene to glutamic acid, alanine, or proline. Similarly, a revertant was created in the M gene of mutant tsO23 by a Glu-21----Gly substitution. A series of wt- and mutant-M-gene chimeras was also constructed to create mutant and revertant clones with Leu----Phe and His----Tyr alterations at amino acids 111 and 227, respectively. We then moved the wt and tsO23 M genes and their site-specific mutants and chimeras cloned in pBSM13- into the eucaryotic expression vector pTF7 directed by the T7 bacteriophage RNA polymerase of the vaccinia virus recombinant vTF1-6,2. Western blot analysis of the M proteins transiently expressed in CV-1 cells by plasmids carrying M genes altered at amino acid 21 revealed that the critical antigenic determinant (epitope 1) is expressed only by the Gly-21 M protein and not by Glu-21, Ala-21, or Pro-21 M proteins. Of particular interest is an apparent conformational change, evidenced by slightly but significantly retarded electrophoretic migration, in plasmid-expressed M proteins with amino acids substituted for glycine at position 21. The glutamic acid at position 21 of tsO23 is not responsible for its temperature-sensitive phenotype, because a tsO23 revertant plasmid with glycine substituted at position 21 fails to rescue tsO23 virus in cells infected at the restrictive temperature; conversely, plasmids expressing wt M protein with substitutions of glutamic acid, alanine, or proline at position 21 are just as effective in marker rescue of tsO23 as is the Gly-21 wt M protein. Marker rescue experiments with wt- and mutant-M-gene chimeras support the hypothesis of K. Morita, R. Vanderoef, and J. Lenard (J. Virol. 61:256-263, 1987) that the temperature-sensitive phenotype of tsO23 is due to a phenylalanine substituted for leucine at amino acid 111, rather than the His-227----Tyr substitution or the Gly-21----Glu substitution, which independently accounts for the loss of epitope 1 in the mutant M protein of tsO23.(ABSTRACT TRUNCATED AT 400 WORDS)

摘要

编码水疱性口炎病毒及其突变体tsO23(III)基质(M)蛋白的全长cDNA拷贝被克隆到pBSM13-(蓝色噬菌粒)中。通过限制性内切酶图谱分析、DNA测序以及体外转录和翻译,并用表位特异性单克隆抗体进行Western免疫印迹来鉴定这两种M蛋白,从而证明了这些克隆的真实性。通过合成寡脱氧核苷酸的引物延伸构建定点突变体,使野生型(wt)M基因第21位氨基酸的甘氨酸改变为谷氨酸、丙氨酸或脯氨酸。同样,通过Glu-21→Gly替换在突变体tsO23的M基因中产生了一个回复体。还构建了一系列wt-M基因和突变体-M基因嵌合体,分别在第111和227位氨基酸处产生Leu→Phe和His→Tyr改变的突变体和回复体克隆。然后,我们将克隆在pBSM13-中的wt和tsO23 M基因及其位点特异性突变体和嵌合体转移到由痘苗病毒重组体vTF1-6,2的T7噬菌体RNA聚合酶指导的真核表达载体pTF7中。对携带在第21位氨基酸处发生改变的M基因的质粒在CV-1细胞中瞬时表达的M蛋白进行Western印迹分析表明,关键抗原决定簇(表位1)仅由Gly-21 M蛋白表达,而不由Glu-21、Ala-21或Pro-21 M蛋白表达。特别有趣的是,在第21位氨基酸被取代甘氨酸的氨基酸的质粒表达的M蛋白中,电泳迁移略有但明显延迟,这证明了明显的构象变化。tsO23第21位的谷氨酸并不负责其温度敏感表型,因为在限制温度下感染的细胞中,第21位被甘氨酸取代的tsO23回复体质粒无法拯救tsO23病毒;相反,在第21位表达谷氨酸、丙氨酸或脯氨酸取代的wt M蛋白的质粒在tsO23的标记拯救中与Gly-21 wt M蛋白一样有效。用wt-M基因和突变体-M基因嵌合体进行的标记拯救实验支持了K. Morita、R. Vanderoef和J. Lenard(《病毒学杂志》61:256 - 263, 1987)的假设,即tsO23的温度敏感表型是由于第111位氨基酸处苯丙氨酸取代了亮氨酸,而不是His-227→Tyr替换或Gly-21→Glu替换,后者独立地导致了tsO23突变体M蛋白中表位1的丧失。(摘要截短于400字)

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/568e/253516/0c5d2791065f/jvirol00089-0200-a.jpg

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