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猿猴病毒40补偿了一种血清依赖性功能的细胞突变缺陷,该功能控制G2期的细胞周期进程。

Simian virus 40 compensates a cellular mutational defect of a serum-dependent function controlling cell cycle progression in the G2 phase.

作者信息

Zaitsu H, Kimura G

机构信息

Department of Virology, Kyushu University, Fukuoka, Japan.

出版信息

Virology. 1988 May;164(1):165-70. doi: 10.1016/0042-6822(88)90632-0.

Abstract

Rat 3Y1tsF121 fibroblasts are arrested in the G2 phase at the nonpermissive temperature due to a temperature-sensitive (ts) defect, and the G2 arrest is overcome at the nonpermissive temperature by the addition of a large dose of fresh serum. When the G2-arrested cells which had been exposed to the nonpermissive temperature for 12 hr were shifted down to the permissive temperature, most divided within 12 hr. When the cultures prepared in parallel were infected with simian virus 40 (SV40) at the nonpermissive temperature, the G2-arrested cells divided as early as 6 hr after the expression of T antigen. The G2-arrested cells, which had been exposed to the nonpermissive temperature for 36 hr, lost both the ability to restore the G2 and M traverse at the nonpermissive temperature after the addition of fresh serum and the reversibility of the arrest upon shift down to the permissive temperature. However, SV40 induced these cells to divide at the nonpermissive temperature, as in the case of the reversibly arrested cells. A small t-antigen-deletion mutant (dl-884) also induced both types of the G2-arrested cells to divide at the nonpermissive temperature. These results suggest that (1) SV40 compensates or activates, in the G2 phase, the function regulating G2 and M transition by serum; (2) SV40 induces restoration of the irreversible G2 arrest; and (3) small t antigen is not responsible for these activities of SV40.

摘要

大鼠3Y1tsF121成纤维细胞由于温度敏感(ts)缺陷,在非允许温度下停滞于G2期,而在非允许温度下添加大剂量新鲜血清可克服G2期停滞。将在非允许温度下暴露12小时的G2期停滞细胞转移至允许温度后,大多数细胞在12小时内分裂。当平行制备的培养物在非允许温度下感染猿猴病毒40(SV40)时,G2期停滞细胞在T抗原表达后6小时就开始分裂。在非允许温度下暴露36小时的G2期停滞细胞,在添加新鲜血清后丧失了在非允许温度下恢复G2期和进入M期的能力,以及转移至允许温度后停滞状态的可逆性。然而,SV40可诱导这些细胞在非允许温度下分裂,就像可逆性停滞细胞的情况一样。一个小t抗原缺失突变体(dl - 884)也可诱导这两种类型的G2期停滞细胞在非允许温度下分裂。这些结果表明:(1)SV40在G2期补偿或激活了由血清调节G2期和M期转换的功能;(2)SV40诱导不可逆G2期停滞的恢复;(3)小t抗原与SV40的这些活性无关。

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