Marhaba R, Mary F, Pelassy C, Stanescu A T, Aussel C, Breittmayer J P
INSERM Unit 343, l'Archet Hospital, Nice, France.
J Immunol. 1996 Aug 15;157(4):1468-73.
The mechanism by which calcium-depleted intracellular stores may trigger an external calcium influx through a calcium release-activated channel was investigated by analyzing the effects of several protein tyrosine kinase inhibitors on calcium movements in Jurkat T cells. Tyrphostin A9, an inhibitor of the kinase activity of the platelet-derived growth factor (PDGF) receptor, dramatically impaired the sustained elevation of cytosolic calcium concentration, induced by either CD3 mAbs, thapsigargin, ionomycin at low (10(-7) M) concentration, or passive depletion of intracellular stores; other tested tyrphostins, lavendustin, genistein, and compound 5 lacked significant effect. Tyrphostin A9, added during the plateau phase, was able to return cytosolic calcium to resting concentration. Likewise, it abrogated manganese entry in cells stimulated by CD3 or thapsigargin, measured by the quenching of the fluorescence of Indo-1. However, it did not measurably modify kinetics of intracellular calcium releases monitored in the absence of extracellular calcium, nor did it reverse the inhibition of phosphatidylserine that occurs as a consequence of emptying intracellular stores. Analyses of tyrosine phosphorylations demonstrated that A9 inhibited the phosphorylation of proteins, which occurred every time that internal calcium stores were depleted. These phosphorylations were not impaired by chelation of external Ca2+, nor by La3+ that inhibits calcium release-induced calcium entry. We concluded that their inhibition was not a consequence, but may be a cause, of the blockade of calcium release-activated channel by tyrphostin A9.
通过分析几种蛋白酪氨酸激酶抑制剂对Jurkat T细胞中钙运动的影响,研究了细胞内钙储存耗竭通过钙释放激活通道触发细胞外钙内流的机制。血小板衍生生长因子(PDGF)受体激酶活性抑制剂酪氨酸磷酸化酶A9显著削弱了由CD3单克隆抗体、毒胡萝卜素、低浓度(10^(-7) M)离子霉素或细胞内储存被动耗竭诱导的胞质钙浓度持续升高;其他测试的酪氨酸磷酸化酶,薰衣草素、染料木黄酮和化合物5没有显著影响。在平台期添加酪氨酸磷酸化酶A9能够使胞质钙恢复到静息浓度。同样,它消除了通过Indo-1荧光淬灭测量的CD3或毒胡萝卜素刺激的细胞中的锰内流。然而,它没有显著改变在无细胞外钙的情况下监测的细胞内钙释放动力学,也没有逆转由于细胞内储存排空而发生的磷脂酰丝氨酸抑制。酪氨酸磷酸化分析表明,A9抑制每次细胞内钙储存耗竭时发生的蛋白质磷酸化。这些磷酸化不受细胞外Ca2+螯合的影响,也不受抑制钙释放诱导的钙内流的La3+的影响。我们得出结论,它们的抑制不是酪氨酸磷酸化酶A9阻断钙释放激活通道的结果,而可能是其原因。