Yasuda H, Nakata T, Kamijo M, Honda R, Nakamura M, Ninomiya-Tsuji J, Yamashita M, Nagahama Y, Ohba Y
Division of Biology, Faculty of Pharmaceutical Sciences, Kanazawa University, Ishikawa, Japan.
Somat Cell Mol Genet. 1992 Sep;18(5):403-8. doi: 10.1007/BF01233079.
Kinases of the mammalian cdc2 family including cdk2 (cyclin-dependent kinase 2) are thought to be involved in both the G2/M transition and DNA replication. To investigate the role of cdc2 kinase and cdk2 in cell cycle progression, murine tsFT210 cells bearing a temperature-sensitive cdc2 mutation were used. These kinases were purified by column chromatography, using a peptide with the consensus phosphorylation site of cdc2 kinase as the substrate. In this mutant, cdc2 kinase activity was temperature sensitive and cdk2 activity was not. At the restrictive temperature, the mutant was only arrested in the G2 phase and not in the G1-S phase, suggesting that cdk2 did not compensate for cdc2 kinase at the G2/M transition but did function at the G1-S phase. This suggestion was supported by the finding that transfection of cdk2 cDNA did not improve the growth of the mutant cell line at the restrictive temperature, although transfection of cdc2 cDNA did.
包括细胞周期蛋白依赖性激酶2(cdk2)在内的哺乳动物cdc2家族激酶,被认为与G2/M期转换和DNA复制均有关。为了研究cdc2激酶和cdk2在细胞周期进程中的作用,使用了携带温度敏感型cdc2突变的小鼠tsFT210细胞。以具有cdc2激酶共有磷酸化位点的肽为底物,通过柱色谱法纯化这些激酶。在该突变体中,cdc2激酶活性具有温度敏感性,而cdk2活性则不具有温度敏感性。在限制温度下,该突变体仅在G2期停滞,而不在G1-S期停滞,这表明在G2/M期转换时cdk2不能补偿cdc2激酶的功能,但在G1-S期发挥作用。这一推测得到以下发现的支持:转染cdc2 cDNA可改善突变细胞系在限制温度下的生长,而转染cdk2 cDNA则不能。