Leite M F, Dranoff J A, Gao L, Nathanson M H
Department of Cell Biology, Yale University School of Medicine, New Haven, CT 06520, USA.
Biochem J. 1999 Jan 15;337 ( Pt 2)(Pt 2):305-9.
The ryanodine receptor (RyR) is the principal Ca2+-release channel in excitable cells, whereas the inositol 1,4,5-trisphosphate (InsP3) receptor (InsP3R) is primarily responsible for Ca2+ release in non-excitable cells, including epithelia. RyR also is expressed in a number of non-excitable cell types, but is thought to serve as an auxiliary or alternative Ca2+-release pathway in those cells. Here we use reverse transcription PCR to show that a polarized epithelium, the pancreatic acinar cell, expresses the type 2, but not the type 1 or 3, isoform of RyR. We furthermore use immunochemistry to demonstrate that the type 2 RyR is distributed throughout the basolateral and, to a lesser extent, the apical region of the acinar cell, but is excluded from the trigger zone, where cytosolic Ca2+ signals originate in this cell type. Since propagation of Ca2+ waves in acinar cells is sensitive to ryanodine, caffeine and Ca2+, these findings suggest that Ca2+ waves in this cell type result from the co-ordinated release of Ca2+, first from InsP3Rs in the trigger zone, then from RyRs elsewhere in the cell. RyR may play a fundamental role in Ca2+ signalling in polarized epithelia, including for Ca2+ signals initiated by InsP3.
兰尼碱受体(RyR)是可兴奋细胞中主要的Ca2+释放通道,而肌醇1,4,5-三磷酸(InsP3)受体(InsP3R)主要负责包括上皮细胞在内的非可兴奋细胞中的Ca2+释放。RyR也在多种非可兴奋细胞类型中表达,但被认为在这些细胞中作为辅助性或替代性的Ca2+释放途径。在此,我们利用逆转录PCR表明,一种极化上皮细胞——胰腺腺泡细胞,表达RyR的2型异构体,而非1型或3型。我们进一步利用免疫化学证明,2型RyR分布于整个腺泡细胞的基底外侧区域,在较小程度上也分布于顶端区域,但触发区除外,在这种细胞类型中,胞质Ca2+信号即源于该触发区。由于腺泡细胞中Ca2+波的传播对兰尼碱、咖啡因和Ca2+敏感,这些发现表明,这种细胞类型中的Ca2+波是由Ca2+的协同释放产生的,首先是来自触发区的InsP3R,然后是来自细胞其他部位的RyR。RyR可能在极化上皮细胞的Ca2+信号传导中起重要作用,包括由InsP3引发的Ca2+信号。