Zagranichnaya Tatiana K, Wu Xiaoyan, Villereal Mitchel L
Department of Neurobiology, Pharmacology and Physiology, University of Chicago, Illinois 60637, USA.
J Biol Chem. 2005 Aug 19;280(33):29559-69. doi: 10.1074/jbc.M505842200. Epub 2005 Jun 22.
Endogenously expressed canonical transient receptor potential (TRPC) homologs were investigated for their role in forming store-operated, 1-oleoyl-2-acetyl-sn-glycerol-stimulated, or carbachol (CCh)-stimulated calcium entry pathways in HEK-293 cells. Measurement of thapsigargin-stimulated Ba(2+) entry indicated that the individual suppression of TRPC1, TRPC3, or TRPC7 protein levels, by small interfering RNA (siRNA) techniques, dramatically inhibited (52-68%) store-operated calcium entry (SOCE), whereas suppression of TRPC4 or TRPC6 had no effect. Combined suppression of TRPC1-TRPC3, TRPC1-TRPC7, TRPC3-TRPC7, or TRPC1-TRPC3-TRPC7 gave only slightly more inhibition of SOCE (74-78%) than seen with suppression of TRPC1 alone (68%), suggesting that these three TRPC homologs work in tandem to mediate a large component of SOCE. Evidence from co-immunoprecipitation experiments indicates that a TRPC1-TRPC3-TRPC7 complex, predicted from siRNA results, does exist. The suppression of either TRPC3 or TRPC7, but not TRPC1, induced a high Ba(2+) leak flux that was inhibited by 2-APB and SKF96365, suggesting that the influx is via leaky store-operated channels. The high Ba(2+) leak flux is eliminated by co-suppression of TRPC1-TRPC3 or TRPC1-TRPC7. For 1-oleoyl-2-acetyl-sn-glycerol-stimulated cells, siRNA data indicate that TRPC1 plays no role in mediating Ba(2+) entry, which appears to be mediated by the participation of TRPC3, TRPC4, TRPC6, and TRPC7. CCh-stimulated Ba(2+) entry, on the other hand, could be inhibited by suppression of any of the five endogenously expressed TRPC homologs, with the degree of inhibition being consistent with CCh stimulation of both store-operated and receptor-operated channels. In summary, endogenous TRPC1, TRPC3, and TRPC7 participate in forming heteromeric store-operated channels, whereas TRPC3 and TRPC7 can also participate in forming heteromeric receptor-operated channels.
研究了内源性表达的典型瞬时受体电位(TRPC)同源物在HEK-293细胞中形成储存-操作性、1-油酰基-2-乙酰基-sn-甘油刺激或卡巴胆碱(CCh)刺激的钙内流途径中的作用。毒胡萝卜素刺激的Ba(2+)内流测量表明,通过小干扰RNA(siRNA)技术单独抑制TRPC1、TRPC3或TRPC7蛋白水平,可显著抑制(52-68%)储存-操作性钙内流(SOCE),而抑制TRPC4或TRPC6则无作用。联合抑制TRPC1-TRPC3、TRPC1-TRPC7、TRPC3-TRPC7或TRPC1-TRPC3-TRPC7对SOCE的抑制作用(74-78%)仅略高于单独抑制TRPC1(68%),这表明这三种TRPC同源物协同作用介导了SOCE的很大一部分。免疫共沉淀实验证据表明,根据siRNA结果预测的TRPC1-TRPC3-TRPC7复合物确实存在。抑制TRPC3或TRPC7而非TRPC1会诱导高Ba(2+)泄漏通量,该通量被2-APB和SKF96365抑制,表明该内流是通过泄漏的储存-操作性通道。通过联合抑制TRPC1-TRPC3或TRPC1-TRPC7可消除高Ba(2+)泄漏通量。对于1-油酰基-2-乙酰基-sn-甘油刺激的细胞,siRNA数据表明TRPC1在介导Ba(2+)内流中不起作用,Ba(2+)内流似乎由TRPC3、TRPC4、TRPC6和TRPC7的参与介导。另一方面,抑制五种内源性表达的TRPC同源物中的任何一种均可抑制CCh刺激的Ba(2+)内流,抑制程度与CCh对储存-操作性通道和受体-操作性通道的刺激一致。总之,内源性TRPC1、TRPC3和TRPC7参与形成异源多聚体储存-操作性通道,而TRPC3和TRPC7也可参与形成异源多聚体受体-操作性通道。