Penner Reinhold, Fleig Andrea
Laboratory of Cell and Molecular Signaling, Center for Biomedical Research at The Queen's Medical Center and John A. Burns School of Medicine at the University of Hawaii, Honolulu, HI 96813, USA.
Sci STKE. 2004 Jul 20;2004(243):pe38. doi: 10.1126/stke.2432004pe38.
Store-operated or capacitative Ca2+ entry is a prominent feature of many electrically nonexcitable cell types. It is due to Ca2+ ion permeation pathways in the plasma membrane that are activated after receptor-mediated Ca2+ release from intracellular stores. Despite hundreds of publications on the topic of store-operated Ca2+ entry and intense efforts by many dedicated laboratories, neither the molecular nature of the ion permeation pathway nor its activation mechanism is known. Here we review the progress made on the characterization of store-operated currents and the challenges encountered in identifying the molecular components of store-operated Ca2+ entry.
储存操纵性或容量性Ca2+内流是许多非电兴奋性细胞类型的一个显著特征。它是由于质膜中的Ca2+离子渗透途径在受体介导的Ca2+从细胞内储存库释放后被激活所致。尽管关于储存操纵性Ca2+内流这一主题已有数百篇出版物,并且许多专注的实验室也付出了巨大努力,但离子渗透途径的分子本质及其激活机制均尚不明确。在此,我们综述了在储存操纵性电流特征描述方面取得的进展以及在鉴定储存操纵性Ca2+内流分子成分过程中所遇到的挑战。