McGowan J J, Wagner R R
J Virol. 1981 Apr;38(1):356-67. doi: 10.1128/JVI.38.1.356-367.1981.
DNA synthesis in mouse myeloma (MPC-11) cells and L cells was rapidly and progressively inhibited by infection with vesicular stomatitis virus (VSV). No significant difference in cellular DNA synthesis inhibition was noted between synchronized and unsynchronized cells, nor did synchronized cells vary in their susceptibility to VSV infection after release from successive thymidine and hydroxyurea blocks. Cellular RNA synthesis was inhibited to about the same extent as DNA synthesis, but cellular protein synthesis was less affected by VSV at the same multiplicity of infection. The effect of VSV on cellular DNA synthesis could not be attributed to degradation of existing DNA or to decreased uptake of deoxynucleoside triphosphates, nor were DNA polymerase and thymidine kinase activities significantly different in VSV-infected and uninfected cell extracts. Analysis by alkaline sucrose gradients of DNA in pulse-labeled uninfected and VSV-infected cells indicated that VSV infection did not appear to influence DNA chain elongation. Cellular DNA synthesis was not significantly inhibited by infection with the VSV polymerase mutant tsG114(I) at the restrictive temperature or by infection with defective-interfering VSV DI-011 (5' end of the genome), but DI-HR-LT (3' end of genome) exhibited initially rapid but not prolonged inhibition of MPC-11 cell DNA synthesis. DNA synthesis inhibitory activity of wild-type VSV was only slowly and partially inactivated by very large doses of UV irradiation. These data suggest that, as in the effect of VSV on cellular RNA synthesis (Weck et al., J. Virol. 30:746-753, 1979), inhibition of cellular DNA synthesis by VSV requires transcription of a small segment of the viral genome.
水泡性口炎病毒(VSV)感染可迅速并逐步抑制小鼠骨髓瘤(MPC-11)细胞和L细胞中的DNA合成。同步化细胞和非同步化细胞在细胞DNA合成抑制方面未观察到显著差异,且从连续的胸苷和羟基脲阻断中释放后,同步化细胞对VSV感染的敏感性也没有变化。细胞RNA合成的抑制程度与DNA合成大致相同,但在相同感染复数下,细胞蛋白质合成受VSV的影响较小。VSV对细胞DNA合成的作用不能归因于现有DNA的降解或脱氧核苷三磷酸摄取的减少,在VSV感染和未感染的细胞提取物中,DNA聚合酶和胸苷激酶活性也没有显著差异。对脉冲标记的未感染和VSV感染细胞中的DNA进行碱性蔗糖梯度分析表明,VSV感染似乎不影响DNA链的延伸。在限制温度下,用VSV聚合酶突变体tsG114(I)感染或用缺陷干扰型VSV DI-011(基因组5'端)感染,细胞DNA合成均未受到显著抑制,但DI-HR-LT(基因组3'端)最初对MPC-11细胞DNA合成表现出快速但不持久的抑制作用。野生型VSV的DNA合成抑制活性仅在大剂量紫外线照射下缓慢且部分失活。这些数据表明,如同VSV对细胞RNA合成的作用(Weck等人,《病毒学杂志》30:746 - 753,1979),VSV对细胞DNA合成的抑制需要病毒基因组一小段的转录。