Olszewski S, Deeney J T, Schuppin G T, Williams K P, Corkey B E, Rhodes C J
E. P. Joslin Research Laboratory, Joslin Diabetes Center, Brigham and Women's Hospital, Boston, Massachusetts 02215.
J Biol Chem. 1994 Nov 11;269(45):27987-91.
A key protein involved in the regulated exocytotic mechanism in neuroendocrine cells is the GTP-binding protein, Rab3A. Rab3A is thought to mediate exocytosis by an interaction of its effector domain with a putative effector protein. We demonstrate here that Rab3A effector domain peptides specifically stimulated insulin exocytosis in electroporated insulin-secreting cells (K0.5 activation, 6-8 microM) in a Ca(2+)-independent manner, although in the presence of Ca2+ insulin exocytosis was further potentiated. By using a 125I-radiolabeled photoactivated cross-linking Rab3A effector domain peptide, we identified a cytosolic protein doublet (REEP-1 and REEP-2), which specifically interacted with the Rab3A effector domain. Competitive inhibition studies revealed this protein-protein interaction to be at a concentration equivalent to that required for Rab3A effector domain peptides to trigger insulin exocytosis (Ki, 6-8 microM). Furthermore, under basal secretory conditions REEP-1 and -2 were membrane-associated, but upon stimulation of exocytosis they were released into a cytosolic fraction. Our results suggest that REEP-1 and -2 are part of the regulated exocytotic machinery, and their dissociation upon stimulation of hormone release (likely from a protein complex) may be essential to the mechanism that triggers regulated exocytosis in pancreatic beta-cells.
神经内分泌细胞中参与调节性胞吐机制的一种关键蛋白是GTP结合蛋白Rab3A。Rab3A被认为通过其效应结构域与一种假定的效应蛋白相互作用来介导胞吐作用。我们在此证明,Rab3A效应结构域肽以不依赖Ca(2+)的方式特异性刺激电穿孔胰岛素分泌细胞中的胰岛素胞吐作用(半最大激活浓度,6 - 8 microM),尽管在Ca2+存在的情况下胰岛素胞吐作用会进一步增强。通过使用125I放射性标记的光活化交联Rab3A效应结构域肽,我们鉴定出一种胞质蛋白双峰(REEP - 1和REEP - 2),它与Rab3A效应结构域特异性相互作用。竞争性抑制研究表明,这种蛋白质 - 蛋白质相互作用的浓度与Rab3A效应结构域肽触发胰岛素胞吐作用所需的浓度相当(抑制常数,6 - 8 microM)。此外,在基础分泌条件下,REEP - 1和 - 2与膜相关,但在刺激胞吐作用时它们会释放到胞质组分中。我们的结果表明,REEP - 1和 - 2是调节性胞吐机制的一部分,它们在激素释放刺激时(可能从蛋白质复合物中)的解离可能对触发胰腺β细胞中调节性胞吐作用的机制至关重要。