Meda P, Bosco D, Chanson M, Giordano E, Vallar L, Wollheim C, Orci L
Department of Morphology, University of Geneva Medical School, Switzerland.
J Clin Invest. 1990 Sep;86(3):759-68. doi: 10.1172/JCI114772.
To determine whether insulin secretion is affected by a blockage of gap junctions between B cells, we have studied the secretion of rat pancreatic islets of Langerhans, primary dispersed islet cells, and cells of the RINm5F line, during short-term exposure to heptanol. Within minutes, this alkanol blocked gap junctions between the B cells of intact islets and abolished their normal secretory response to glucose. These two changes were rapidly and fully reversible after return of the islets to control medium. We further found that heptanol had no significant effect on the glucose-stimulated secretion of single B cells but inhibited that of B cell pairs. In the clone of RINm5F cells, whose junctional coupling and D-glyceraldehyde-induced stimulation of insulin release by aggregated cells were also inhibited by heptanol, this alkanol did not perturb intracellular pH and Ca2+ and the most distal steps of the secretion pathway. In summary, a gap junction blocker affected the secretion of insulin-producing cells by a mechanism which is dependent on cell contact and is not associated with detectable pleiotropic perturbations of the cell secretory machinery. The data provide evidence for the involvement of junctional coupling in the control of insulin secretion.
为了确定间隙连接的阻断是否会影响B细胞的胰岛素分泌,我们研究了大鼠胰岛、原代分散胰岛细胞和RINm5F细胞系细胞在短期暴露于庚醇期间的分泌情况。几分钟内,这种烷醇阻断了完整胰岛B细胞之间的间隙连接,并消除了它们对葡萄糖的正常分泌反应。胰岛回到对照培养基后,这两种变化迅速且完全可逆。我们进一步发现,庚醇对单个B细胞的葡萄糖刺激分泌没有显著影响,但抑制了B细胞对的分泌。在RINm5F细胞克隆中,其连接偶联和聚集细胞对D-甘油醛诱导的胰岛素释放刺激也被庚醇抑制,这种烷醇不会干扰细胞内pH和Ca2+以及分泌途径的最远端步骤。总之,间隙连接阻滞剂通过一种依赖于细胞接触的机制影响胰岛素产生细胞的分泌,且与细胞分泌机制可检测到的多效性扰动无关。这些数据为连接偶联参与胰岛素分泌的控制提供了证据。