Togashi Kazuya, Hara Yuji, Tominaga Tomoko, Higashi Tomohiro, Konishi Yasunobu, Mori Yasuo, Tominaga Makoto
Section of Cell Signaling, Okazaki Institute for Integrative Bioscience, National Institutes of Natural Sciences, Aichi, Japan.
EMBO J. 2006 May 3;25(9):1804-15. doi: 10.1038/sj.emboj.7601083. Epub 2006 Apr 6.
There are eight thermosensitive TRP (transient receptor potential) channels in mammals, and there might be other TRP channels sensitive to temperature stimuli. Here, we demonstrate that TRPM2 can be activated by exposure to warm temperatures (>35 degrees C) apparently via direct heat-evoked channel gating. beta-NAD(+)- or ADP-ribose-evoked TRPM2 activity is robustly potentiated at elevated temperatures. We also show that, even though cyclic ADP-ribose (cADPR) does not activate TRPM2 at 25 degrees C, co-application of heat and intracellular cADPR dramatically potentiates TRPM2 activity. Heat and cADPR evoke similar responses in rat insulinoma RIN-5F cells, which express TRPM2 endogenously. In pancreatic islets, TRPM2 is coexpressed with insulin, and mild heating of these cells evokes increases in both cytosolic Ca(2+) and insulin release, which is K(ATP) channel-independent and protein kinase A-mediated. Heat-evoked responses in both RIN-5F cells and pancreatic islets are significantly diminished by treatment with TRPM2-specific siRNA. These results identify TRPM2 as a potential molecular target for cADPR, and suggest that TRPM2 regulates Ca(2+) entry into pancreatic beta-cells at body temperature depending on the production of cADPR-related molecules, thereby regulating insulin secretion.
哺乳动物中有8种热敏性瞬时受体电位(TRP)通道,可能还存在其他对温度刺激敏感的TRP通道。在此,我们证明TRPM2可通过暴露于温暖温度(>35摄氏度)而被激活,显然是通过直接的热诱发通道门控。β-烟酰胺腺嘌呤二核苷酸(β-NAD⁺)或ADP-核糖诱发的TRPM2活性在升高的温度下会显著增强。我们还表明,尽管环ADP-核糖(cADPR)在25摄氏度时不会激活TRPM2,但热与细胞内cADPR共同作用会显著增强TRPM2活性。热和cADPR在大鼠胰岛素瘤RIN-5F细胞中引发相似的反应,该细胞内源性表达TRPM2。在胰岛中,TRPM2与胰岛素共同表达,对这些细胞进行轻度加热会引起胞质Ca²⁺增加和胰岛素释放增加,这与ATP敏感性钾通道无关且由蛋白激酶A介导。用TRPM2特异性小干扰RNA处理后,RIN-5F细胞和胰岛中的热诱发反应均显著减弱。这些结果确定TRPM2是cADPR的潜在分子靶点,并表明TRPM2在体温下根据cADPR相关分子的产生调节Ca²⁺进入胰腺β细胞,从而调节胰岛素分泌。