Melero J A, Fincham V
J Cell Physiol. 1978 Jun;95(3):295-306. doi: 10.1002/jcp.1040950307.
Temperature-sensitive Chinese hamster cells (K12) have been shown to be defective for the initiation of new rounds of DNA replication when incubated at the restrictive temperature (40.5 degrees). By temperature shift experiments with synchronous cultures, we have marked out the step at which the mutation is expressed as the four hours preceding the initiation of DNA synthesis. The block imposed by the mutation has been shown to be irreversible. In order to approach the biochemical characterization of the temperature-sensitive function in K12 cells, we have analyzed the cellular proteins synthesized under permissive (35 degrees) and restrictive temperatures. The synthesis of three polypeptides is markedly enhanced when K12 cells are incubated at 40.5 degrees. One of them (band B) has turned out to be a useful biochemical marker of the expression of K12 mutation since its synthesis is not affected in other ts-mutants or in hybrids in which K12 mutation is complemented. In addition, the alteration in band B synthesis is irreversible and occurs during the same stage of the cell cycle at which the mutated function is expressed.
温度敏感型中国仓鼠细胞(K12)已被证明,在限制温度(40.5摄氏度)下孵育时,新一轮DNA复制的起始存在缺陷。通过对同步培养物进行温度转换实验,我们确定了突变表达的步骤,即DNA合成起始前的四个小时。已证明该突变造成的阻断是不可逆的。为了深入了解K12细胞中温度敏感功能的生化特性,我们分析了在允许温度(35摄氏度)和限制温度下合成的细胞蛋白。当K12细胞在40.5摄氏度下孵育时,三种多肽的合成显著增强。其中一种(B条带)已被证明是K12突变表达的有用生化标志物,因为在其他温度敏感型突变体或K12突变得到互补的杂种细胞中,其合成不受影响。此外,B条带合成的改变是不可逆的,且发生在细胞周期中突变功能表达的同一阶段。