Iino Masamitsu
Department of Pharmacology, Graduate School of Medicine, The University of Tokyo, Japan.
Novartis Found Symp. 2002;246:142-6; discussion 147-53, 221-7.
We have visualized Ca2+ signals in smooth muscle cells mediated by the release of Ca2+ from intracellular Ca2+ stores and studied their underlying molecular basis. Ca2+ signals in smooth muscle cells within intact arterial tissues show diverse spatiotemporal patterns: Ca2+ waves and oscillations were induced by agonist stimulation or by sympathetic nerve stimulation. We also found spontaneous Ca2+ oscillations with low amplitudes (Ca2+ ripples) that were observed in the absence of extrinsic stimulation. These dynamic spatiotemporal patterns were generated by Ca2+ release via the inositol-1,4,5-trisphosphate (InsP3) receptor (InsP3R). We then studied the molecular basis of such complex Ca2+ signalling patterns. The activity of InsP3R is regulated by the cytoplasmic Ca2+ concentration. The sensitivity of InsP3R to Ca2+ provides feedback regulation of the Ca2+ release, which may be important for the generation of Ca2+ signalling patterns. A series of site-specific mutagenesis experiments in type 1 InsP3R allowed us to identify glutamate at position 2100 as the Ca2+ sensor. Substitution of the amino acid by aspartic acid resulted in a 10-fold decrease in Ca2+ sensitivity. In cells expressing the mutant InsP3R, Ca2+ release spikes and oscillations were inhibited, indicating the role of the Ca2+ sensitivity of InsP3R in the generation of spatiotemporal patterns of Ca2+ signals.
我们已经观察到由细胞内钙库释放钙介导的平滑肌细胞中的钙信号,并研究了其潜在的分子基础。完整动脉组织中的平滑肌细胞中的钙信号呈现出多样的时空模式:激动剂刺激或交感神经刺激可诱导钙波和振荡。我们还发现,在没有外部刺激的情况下可观察到低幅度的自发钙振荡(钙涟漪)。这些动态时空模式是由通过肌醇-1,4,5-三磷酸(InsP3)受体(InsP3R)释放钙产生的。然后,我们研究了这种复杂钙信号模式的分子基础。InsP3R的活性受细胞质钙浓度调节。InsP3R对钙的敏感性提供了钙释放的反馈调节,这可能对钙信号模式的产生很重要。对1型InsP3R进行的一系列位点特异性诱变实验使我们能够确定2100位的谷氨酸作为钙传感器。用天冬氨酸替代该氨基酸导致钙敏感性降低10倍。在表达突变型InsP3R的细胞中,钙释放尖峰和振荡受到抑制,这表明InsP3R的钙敏感性在钙信号时空模式的产生中起作用。