Yogo Takatoshi, Kikuchi Kazuya, Inoue Takanari, Hirose Kenzo, Iino Masamitsu, Nagano Tetsuo
Graduate School of Pharmaceutical Sciences, The University of Tokyo, 7-3-1 Hongo, Bunkyo-ku, Tokyo 113-0033, Japan.
Chem Biol. 2004 Aug;11(8):1053-8. doi: 10.1016/j.chembiol.2004.05.012.
A membrane-permeant malachite green-conjugated IP3 analog (MGIP3/PM) was synthesized as a probe for small molecule-based CALI (smCALI), and its effect on the Ca2+ signaling in intact DT40 chicken B cells was examined. In DT40 B cells treated with the smCALI probe, laser irradiation inhibited IP3-induced Ca2+ oscillations in response to B cell receptor stimulation, demonstrating that IP3R was acutely inactivated. We then applied smCALI to clarify the mechanism of capacitative Ca2+ entry (CCE), in which involvement of IP3R has been suggested. Despite the inactivation of IP3R by smCALI, thapsigargin-induced CCE remained unaffected, providing evidence that functional IP3R is not required for CCE in DT40 cells. These results demonstrate the potency of the smCALI technique for the study of the roles of IP3R in complex intracellular Ca2+ dynamics.
合成了一种膜渗透性孔雀石绿偶联的IP3类似物(MGIP3/PM)作为基于小分子的化学诱导邻近效应(smCALI)的探针,并检测了其对完整DT40鸡B细胞中Ca2+信号传导的影响。在用smCALI探针处理的DT40 B细胞中,激光照射抑制了B细胞受体刺激后IP3诱导的Ca2+振荡,表明IP3R被急性失活。然后,我们应用smCALI来阐明钙池操纵性Ca2+内流(CCE)的机制,其中已有人提出IP3R参与其中。尽管smCALI使IP3R失活,但毒胡萝卜素诱导的CCE仍未受影响,这证明DT40细胞中的CCE不需要功能性IP3R。这些结果证明了smCALI技术在研究IP3R在复杂细胞内Ca2+动力学中的作用方面的效力。