刺激1
细胞生物学
口腔1
内质网
门控
生物素化
化学
电压依赖性钙通道
钙信号传导
钙
生物物理学
生物
生物化学
信号转导
有机化学
作者
Shenyuan L. Zhang,Ying Yu,Jack Roos,J. Ashot Kozak,Thomas J. Deerinck,Mark H. Ellisman,Kenneth A. Stauderman,Michael D. Cahalan
出处
期刊:Nature
[Springer Nature]
日期:2005-10-01
卷期号:437 (7060): 902-905
被引量:1319
摘要
As the sole Ca2+ entry mechanism in a variety of non-excitable cells, store-operated calcium (SOC) influx is important in Ca2+ signalling and many other cellular processes1,2,3. A calcium-release-activated calcium (CRAC) channel in T lymphocytes is the best-characterized SOC influx channel4,5,6 and is essential to the immune response, sustained activity of CRAC channels being required for gene expression and proliferation7,8,9,10. The molecular identity and the gating mechanism of SOC and CRAC channels have remained elusive. Previously we identified Stim and the mammalian homologue STIM1 as essential components of CRAC channel activation in Drosophila S2 cells and human T lymphocytes11. Here we show that the expression of EF-hand mutants of Stim or STIM1 activates CRAC channels constitutively without changing Ca2+ store content. By immunofluorescence, EM localization and surface biotinylation we show that STIM1 migrates from endoplasmic-reticulum-like sites to the plasma membrane upon depletion of the Ca2+ store. We propose that STIM1 functions as the missing link between Ca2+ store depletion and SOC influx, serving as a Ca2+ sensor that translocates upon store depletion to the plasma membrane to activate CRAC channels.
科研通智能强力驱动
Strongly Powered by AbleSci AI