Hirata K, Nathanson M H, Burgstahler A D, Okazaki K, Mattei E, Sears M L
Department of Ophthalmology and Visual Sciences, Yale University School of Medicine, New Haven, Connecticut 06520-8061, USA.
Invest Ophthalmol Vis Sci. 1999 Aug;40(9):2046-53.
Subcellular Ca2+ signaling patterns, such as Ca2+ waves, gradients, and oscillations, are an important aspect of cell regulation, but the molecular basis for these signaling patterns is not understood. Because Ca2+ release patterns differ among isoforms of the inositol 1,4,5-trisphosphate (InsP3) receptor, the relationship between the distribution of these isoforms and subcellular Ca2+ signaling patterns in nonpigmented epithelial (NPE) cells was investigated.
The distributions of the types I, II, and III InsP3 receptors were determined in NPE cells by immunofluorescence, and subcellular Ca2+ signaling patterns in these cells were examined by confocal line scanning microscopy.
The type I InsP3 receptor was concentrated at the basal pole of NPE cells, whereas the type III receptor was localized to the apical pole. The type II InsP3 receptor was not expressed in detectable amounts. Acetylcholine induced increases in Ca2+ that were mediated by InsP3, and these Ca2+ increases began as Ca2+ waves that were initiated at the apical pole, in the region of the type III InsP3 receptor. Acetylcholine occasionally induced sustained or repetitive Ca2+ increases that were prominent at the basal pole, in the region of the type I InsP3 receptor, but only subtle or absent apically.
Because the type I InsP3 receptor is thought to be responsible for repetitive Ca2+ release events, and the type III InsP3 receptor instead is suited to initiate Ca2+ signals, the subcellular distribution of these two isoforms corresponds to the Ca2+ signaling patterns observed in this cell type. Differential subcellular expression of InsP3 receptor isoforms may be an important molecular mechanism by which NPE cells organize their Ca2+ signals in space and time.
亚细胞Ca2+信号模式,如Ca2+波、梯度和振荡,是细胞调节的一个重要方面,但这些信号模式的分子基础尚不清楚。由于肌醇1,4,5-三磷酸(InsP3)受体的亚型之间Ca2+释放模式不同,因此研究了这些亚型的分布与非色素上皮(NPE)细胞中亚细胞Ca2+信号模式之间的关系。
通过免疫荧光法测定NPE细胞中I型、II型和III型InsP3受体的分布,并通过共聚焦线扫描显微镜检查这些细胞中的亚细胞Ca2+信号模式。
I型InsP3受体集中在NPE细胞的基极,而III型受体定位于顶极。未检测到II型InsP3受体的表达。乙酰胆碱诱导由InsP3介导的Ca2+增加,这些Ca2+增加开始于顶极III型InsP3受体区域的Ca2+波。乙酰胆碱偶尔会诱导持续或重复的Ca2+增加,这些增加在I型InsP3受体区域的基极处很明显,但在顶极处只有细微增加或没有增加。
由于I型InsP3受体被认为负责重复的Ca2+释放事件,而III型InsP3受体则适合启动Ca2+信号,这两种亚型的亚细胞分布与在这种细胞类型中观察到的Ca2+信号模式相对应。InsP3受体亚型的亚细胞表达差异可能是NPE细胞在空间和时间上组织其Ca2+信号的重要分子机制。