Parks R J, Winchcombe-Forhan C, DeLange A M, Xing X, Evans D H
Department of Molecular Biology and Genetics, University of Guelph, Ontario, Canada.
Virus Res. 1998 Aug;56(2):135-47. doi: 10.1016/s0168-1702(98)00055-0.
Poxvirus-encoded DNA ligases are assumed to play a role in viral DNA replication; however mutational inactivation of vaccinia ligase has not been reported to affect viral growth rates in culture. This communication re-examines this surprising aspect of poxviral biology using both Shope fibroma virus (SFV) and vaccinia virus. SFV and vaccinia ligase deficiencies create essentially identical phenotypes. In particular, ligase-deficient SFV strains are mildly UV sensitive and etoposide resistant, phenotypes previously shown to characterize ligase-deficient vaccinia strains. Moreover, we find that ligase mutations can inhibit the growth of both SFV and vaccinia virus in vitro. The poor growth observed in the absence of a viral ligase is correlated with a two- to tenfold reduction in viral and extragenomic DNA synthesis. This phenotype is host dependent. No differences in viral growth or DNA yield were seen when vaccinia strains were cultured on rabbit (SIRC) cells, but ligase deficiencies reduced growth and DNA yields when vaccinia was plated on BSC-40 cells or SFV on SIRC cells. Despite these replicative defects, mutational inactivation of SFV ligase produced no detectable increase in the number of viral DNA breaks and had no effect on virus-catalyzed extragenomic DNA recombination or UV repair. We conclude that poxviral ligases do play a role in viral DNA replication, but the replicative defect is obscured in some cell lines.
痘病毒编码的DNA连接酶被认为在病毒DNA复制中发挥作用;然而,尚未有报道称痘苗病毒连接酶的突变失活会影响其在培养中的病毒生长速率。本通讯使用肖普纤维瘤病毒(SFV)和痘苗病毒重新审视了痘病毒生物学这一令人惊讶的方面。SFV和痘苗病毒连接酶缺陷产生了基本相同的表型。特别是,连接酶缺陷的SFV毒株对紫外线轻度敏感且对依托泊苷耐药,这些表型先前已被证明是连接酶缺陷的痘苗病毒毒株的特征。此外,我们发现连接酶突变可在体外抑制SFV和痘苗病毒的生长。在没有病毒连接酶的情况下观察到的生长不良与病毒和基因组外DNA合成减少两到十倍相关。这种表型依赖于宿主。当痘苗病毒毒株在兔(SIRC)细胞上培养时,未观察到病毒生长或DNA产量的差异,但当痘苗病毒接种在BSC - 40细胞上或SFV接种在SIRC细胞上时,连接酶缺陷会降低生长和DNA产量。尽管存在这些复制缺陷,但SFV连接酶的突变失活并未导致病毒DNA断裂数量的可检测增加,也未对病毒催化的基因组外DNA重组或紫外线修复产生影响。我们得出结论,痘病毒连接酶确实在病毒DNA复制中发挥作用,但在某些细胞系中复制缺陷被掩盖了。