Koo S K, Kim D Y, Park S D, Kang K W, Joe C O
Department of Biological Sciences, Korea Advanced Institute of Science and Technology, Taejon, South Korea.
Mol Cell Biochem. 1997 Feb;167(1-2):41-9. doi: 10.1023/a:1006831114120.
Gap junctional communication during the progression of cell cycle from quiescent G0 to S phase was examined in cultured clone 9 rat liver cells. The transfer of scrape-loaded fluorescent dye was suppressed immediately after the stimulation of cell cycle progression in a synchronized cell population. Northern blot analysis showed that the temporal disturbance of gap junctional communication in cells passing from G0 to S phase did not result from transcriptional down-regulation of connexin 43. It was also found that the PKC inhibitor, calphostin C, was able to restore intercellular communication in serum stimulated cells. Data suggest a control mechanism by PKC mediated phosphorylation in the regulation of gap junction function which is vulnerable to cell cycling. The loss of gap junctional communication correlated with the increased phosphorylation of connexin 43 on serine residues in clone 9 cells.
在培养的克隆9大鼠肝细胞中,研究了从静止的G0期到S期细胞周期进程中的间隙连接通讯。在同步化的细胞群体中,细胞周期进程受到刺激后,刮擦加载的荧光染料的转移立即受到抑制。Northern印迹分析表明,从G0期进入S期的细胞中间隙连接通讯的暂时紊乱并非由连接蛋白43的转录下调所致。还发现,蛋白激酶C(PKC)抑制剂钙泊三醇C能够恢复血清刺激细胞中的细胞间通讯。数据表明,PKC介导的磷酸化在间隙连接功能调节中存在一种控制机制,该机制易受细胞周期的影响。在克隆9细胞中,间隙连接通讯的丧失与连接蛋白43丝氨酸残基磷酸化增加相关。