Timoshenko Olga, Al-Ali Abdulaziz, Martin Brian A B, Sweet Clive
School of Biosciences, The University of Birmingham, Edgbaston, Birmingham B152TT, UK.
Virology. 2009 Sep 15;392(1):114-22. doi: 10.1016/j.virol.2009.06.049. Epub 2009 Jul 29.
Twenty-six non-synonymous and synonymous mutations have been identified in the temperature-sensitive (ts) mutant (tsm5) of the K181 (Birmingham) variant of murine cytomegalovirus that is deficient in DNA synthesis, processing and packaging at the non-permissive temperature and produces undetectable levels of infectious virus in mice. Non-synonymous mutations identified in the M70 (primase), M56 (terminase) and M98 (nuclease) ORFs were introduced individually and in combination into the K181 (Perth) variant using BAC technology to examine their role in the ts phenotype. The M56 (G439R) and M98 (P324S) mutations had no evident role in the ts phenotype. However, the C890Y M70 mutation alone and in combination with the M56 and/or M98 mutations rendered the virus ts, unable to replicate in mice and highly defective in DNA synthesis. Reversion of the tyrosine mutation to cysteine or introduction of C890M (experimentally) or C890S (naturally) restored the wt phenotype.
在小鼠巨细胞病毒K181(伯明翰)变体的温度敏感(ts)突变体(tsm5)中已鉴定出26个非同义突变和同义突变,该突变体在非允许温度下DNA合成、加工和包装存在缺陷,且在小鼠中产生不可检测水平的传染性病毒。利用BAC技术将在M70(引发酶)、M56(末端酶)和M98(核酸酶)开放阅读框中鉴定出的非同义突变单独或组合引入K181(珀斯)变体中,以研究它们在ts表型中的作用。M56(G439R)和M98(P324S)突变在ts表型中没有明显作用。然而,单独的C890Y M70突变以及与M56和/或M98突变组合,使病毒表现为ts,无法在小鼠中复制,并且在DNA合成方面存在高度缺陷。将酪氨酸突变回复为半胱氨酸,或(实验性地)引入C890M或(自然地)引入C890S可恢复野生型表型。