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胰岛素分泌细胞中细胞间钙信号协调的机制。

Mechanisms for the coordination of intercellular calcium signaling in insulin-secreting cells.

作者信息

Cao D, Lin G, Westphale E M, Beyer E C, Steinberg T H

机构信息

Department of Internal Medicine, Washington University School of Medicine, St Louis, MO 63110, USA.

出版信息

J Cell Sci. 1997 Feb;110 ( Pt 4):497-504. doi: 10.1242/jcs.110.4.497.

Abstract

Insulin-mediated increases in cytosolic calcium are synchronized among the cells in a pancreatic islet, and result in pulsatile secretion of insulin. Pancreatic beta cells express the gap junction protein connexin43 and are functionally coupled, making gap junctional communication a likely mechanism for the synchronization of calcium transients among islet cells. To define the mechanism by which pancreatic islet cells coordinate calcium responses, we studied mechanically-induced intercellular calcium waves in the communication-deficient rat insulinoma cell line RINm5f, and in RINm5f cells transfected with the gap junction protein connexin43. Both RINm5f and RINm5f cells transfected with connexin43 propagated calcium waves that required release of calcium from intracellular stores, did not involve gap junctional communication, and appeared to be mediated by autocrine activity of secreted ATP acting on P2U purinergic receptors. Connexin43 transfectants also propagated calcium waves that required gap junctional communication and influx of extracellular calcium through voltage-gated calcium channels. Gap junction-dependent intercellular calcium waves were inhibited by preventing plasma membrane depolarization. These studies demonstrate two distinct pathways by which insulin-secreting cells can coordinate cytosolic calcium rises, and show that it is by ionic traffic that gap junctions synchronize calcium-dependent events in these cells.

摘要

胰岛素介导的胞质钙增加在胰岛细胞间是同步的,并导致胰岛素的脉冲式分泌。胰腺β细胞表达缝隙连接蛋白连接蛋白43且功能耦合,使得缝隙连接通讯成为胰岛细胞间钙瞬变同步的一种可能机制。为了确定胰岛细胞协调钙反应的机制,我们研究了在通讯缺陷的大鼠胰岛素瘤细胞系RINm5f以及转染了缝隙连接蛋白连接蛋白43的RINm5f细胞中机械诱导的细胞间钙波。RINm5f细胞和转染了连接蛋白43的RINm5f细胞都能传播钙波,这种钙波需要从细胞内储存释放钙,不涉及缝隙连接通讯,且似乎由分泌的ATP作用于P2U嘌呤能受体的自分泌活性介导。转染连接蛋白43的细胞也能传播需要缝隙连接通讯和细胞外钙通过电压门控钙通道内流的钙波。缝隙连接依赖的细胞间钙波通过阻止质膜去极化而受到抑制。这些研究证明了胰岛素分泌细胞协调胞质钙升高的两条不同途径,并表明正是通过离子运输,缝隙连接使这些细胞中依赖钙的事件同步。

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