Kossatz Uta, Dietrich Nils, Zender Lars, Buer Jan, Manns Michael P, Malek Nisar P
Department of Gastroenterology, Hepatology and Endocrinology and Institute for Molecular Biology, Hannover Medical School, Hannover, Germany.
Genes Dev. 2004 Nov 1;18(21):2602-7. doi: 10.1101/gad.321004.
The activity of the SCF(skp2) E3 ligase is required for the proteolytic turnover of several proteins involved in cell cycle control and transcriptional regulation. Loss of skp2 in the mouse leads to a complex phenotype including changes in cell size and DNA content as well as severe proliferation defects. Here we show that the loss of a single skp2 substrate, namely, the cyclin kinase inhibitor p27kip1, reverts the phenotype of skp2 knockout hepatocytes to normal. By comparing the kinetics of p27 turnover and cell cycle progression in skp2 knockout and p27T187A knock-in mice, we define a short period in G1 in which p27 is able to block the cell cycle after the exit from quiescence. Loss of p27 turnover during this period prevents mitotic division and instead leads to compensatory cell growth.
SCF(skp2) E3 连接酶的活性是几种参与细胞周期调控和转录调控的蛋白质进行蛋白水解周转所必需的。小鼠中 skp2 的缺失会导致复杂的表型,包括细胞大小和 DNA 含量的变化以及严重的增殖缺陷。在这里我们表明,单一 skp2 底物即细胞周期蛋白激酶抑制剂 p27kip1 的缺失,可使 skp2 基因敲除肝细胞的表型恢复正常。通过比较 skp2 基因敲除小鼠和 p27T187A 基因敲入小鼠中 p27 周转和细胞周期进程的动力学,我们确定了 G1 期的一个短时期,在此期间 p27 能够在退出静止期后阻断细胞周期。在此期间 p27 周转的缺失可阻止有丝分裂,反而导致代偿性细胞生长。