Van Dolah F M, Ramsdell J S
Marine Biotoxins Program, Charleston Laboratory, U.S. National Marine Fisheries Service, Charleston, South Carolina 29412, USA.
J Cell Physiol. 1996 Jan;166(1):49-56. doi: 10.1002/(SICI)1097-4652(199601)166:1<49::AID-JCP6>3.0.CO;2-G.
Calcium regulates progression through several checkpoints in the cell cycle, including the G1/S-phase transition, G2/M-phase transition, and exit from mitosis. In the GH4C1 rat pituitary cell line, calcium mobilizing polypeptides and calcium channel activation inhibit cell proliferation. This report examines the effects of maitotoxin (MTX), an activator of type L voltage-dependent calcium channels (L-VDCC), on calcium influx and cell cycle progression in GH4C1 cells. MTX causes both a block from G1 to S-phase and a concentration-dependent accumulation of cells in G2+M. MTX does not increase the mitotic index; thus, sustained calcium channel activation by MTX results in an accumulation of cells in G2. In order to temporally localize the MTX-induced G2 block relative to cell cycle regulatory events at the G2/M transition, we assessed the relative activity of two cell cycle regulatory protein kinases, CDC2 and CDK2, in MTX-treated cells. CDC2-specific histone kinase activity in MTX-treated cells is lower than either in cells blocked in mitosis with the microtubule destabilizing agent demecolcine or in randomly cycling cells. In contrast, the activity of CDK2 is highest in MTX-treated cells, consistent with a G2 block prior to CDC2 activation. Together, these results implicate with a G2 block prior to CDC2 activation. Together, these results implicate calcium as an intracellular signal required for progression through G2 phase of the cell cycle prior to CDC2 kinase activation.
钙调节细胞周期中多个检查点的进程,包括G1/S期转换、G2/M期转换以及有丝分裂退出。在GH4C1大鼠垂体细胞系中,钙动员多肽和钙通道激活会抑制细胞增殖。本报告研究了L型电压依赖性钙通道(L-VDCC)激活剂 maitotoxin(MTX)对GH4C1细胞钙内流和细胞周期进程的影响。MTX导致细胞从G1期阻滞到S期,并使细胞在G2+M期呈浓度依赖性积累。MTX不会增加有丝分裂指数;因此,MTX持续激活钙通道会导致细胞在G2期积累。为了相对于G2/M期转换时的细胞周期调节事件在时间上定位MTX诱导的G2期阻滞,我们评估了MTX处理细胞中两种细胞周期调节蛋白激酶CDC2和CDK2的相对活性。MTX处理细胞中CDC2特异性组蛋白激酶活性低于用微管破坏剂秋水仙胺阻滞在有丝分裂期的细胞或随机循环的细胞。相反,CDK2的活性在MTX处理的细胞中最高,这与CDC2激活之前的G2期阻滞一致。总之,这些结果表明在CDC2激酶激活之前,钙是细胞周期G2期进程所需的细胞内信号。