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小鼠巨细胞病毒对阿昔洛韦敏感性的遗传分析

Genetic analysis of the susceptibility of mouse cytomegalovirus to acyclovir.

作者信息

Sandford G R, Wingard J R, Simons J W, Staal S P, Saral R, Burns W H

出版信息

J Virol. 1985 Apr;54(1):104-13. doi: 10.1128/JVI.54.1.104-113.1985.

Abstract

Eight independently derived mouse cytomegalovirus (MCMV) mutants resistant to acyclovir (ACV) were obtained by the sequential plating of wild-type virus in increasing concentrations of ACV. Results of complementation studies among these eight mutants suggest that all had mutations within the same or closely associated genes. A ninth MCMV mutant resistant to phosphonoacetate (PAA) derived by plating wild-type virus in the presence of 100 micrograms of PAA per ml displayed coresistance to ACV and was unable to complement any of the ACV-derived mutants. Recombination experiments among all combinations of the nine MCMV mutants were performed and supported the complementation data in that no recombination could be detected. Seven of the eight ACV-resistant mutants demonstrated cross-resistance to PAA and hypersensitivity to aphidicolin. The one mutant not coresistant to PAA was more susceptible to PAA than was the parent virus. Only a few mutants demonstrated coresistance when the mutants were tested against 9-beta-D-arabinofuranosyladenine (ara-A). The ACV mutant that demonstrated increased susceptibility to PAA was 30-fold more susceptible to ara-A but remained unchanged in susceptibility to aphidicolin. Two of the parent-mutant combinations were selected for DNA synthesis analysis in the presence of ACV (5 microM). A significant decrease in DNA synthesis was demonstrated for both parent viruses, and there was little effect on mutant virus DNA synthesis at the same drug concentration. These results suggest that susceptibility of MCMV to ACV is confined to a product of a single gene and that a mutation of this gene can lead to an altered phenotype when compared with parent virus in susceptibility of DNA synthesis to PAA, ara-A, and aphidicolin, drugs that are known to inhibit DNA polymerase activity.

摘要

通过在浓度递增的阿昔洛韦(ACV)中连续传代野生型病毒,获得了8个独立衍生的对阿昔洛韦耐药的小鼠巨细胞病毒(MCMV)突变体。这8个突变体之间的互补研究结果表明,所有突变体都在相同或紧密相关的基因内发生了突变。通过在每毫升含100微克膦甲酸(PAA)的条件下传代野生型病毒获得的第9个对膦甲酸耐药的MCMV突变体,对阿昔洛韦也具有交叉耐药性,并且不能互补任何一个阿昔洛韦衍生的突变体。对这9个MCMV突变体的所有组合进行了重组实验,实验结果支持了互补数据,即未检测到重组现象。8个阿昔洛韦耐药突变体中有7个对膦甲酸表现出交叉耐药性,对阿非科林表现出超敏感性。唯一不对膦甲酸交叉耐药的突变体比亲代病毒对膦甲酸更敏感。当对这些突变体进行9-β-D-阿拉伯呋喃糖基腺嘌呤(ara-A)测试时,只有少数突变体表现出交叉耐药性。对膦甲酸敏感性增加的阿昔洛韦突变体对ara-A的敏感性提高了30倍,但对阿非科林的敏感性保持不变。选择了两个亲代-突变体组合进行在阿昔洛韦(5微摩尔)存在下的DNA合成分析。两种亲代病毒的DNA合成均显著减少,而在相同药物浓度下对突变体病毒的DNA合成几乎没有影响。这些结果表明,MCMV对阿昔洛韦的敏感性局限于单个基因的产物,并且与亲代病毒相比,该基因的突变可导致在DNA合成对膦甲酸、ara-A和阿非科林(已知可抑制DNA聚合酶活性的药物)的敏感性方面出现改变的表型。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/f09b/254767/7b41e3d63339/jvirol00121-0121-a.jpg

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