Islam Diana, Zhang Nina, Wang Peixiang, Li Hang, Brubaker Patricia L, Gaisano Herbert Y, Wang Qinghua, Jin Tianru
Division of Cell and Molecular Biology, Toronto General Research Institute, University Health Network, 101 College St., Toronto, Ontario M5G 1L7.
Am J Physiol Endocrinol Metab. 2009 Jan;296(1):E174-81. doi: 10.1152/ajpendo.90419.2008. Epub 2008 Oct 14.
Both Epac and PKA are effectors of the second messenger cAMP. Utilizing an exchange protein directly activated by cAMP (Epac) pathway-specific cAMP analog (ESCA), we previously reported that Epac signaling regulates proglucagon gene (gcg) expression in the glucagon-like peptide-1 (GLP-1)-producing intestinal endocrine L-cell lines GLUTag and STC-1. We now show that Epac-2 is also expressed in glucagon-producing pancreatic alpha-cell lines, including PKA-deficient InR1-G9 cells, and that ESCA stimulates gcg promoter and mRNA expression in the InR1-G9 cells. Using a dominant-negative Epac-2 expression plasmid (Epac-2DN), we found that Epac inhibition attenuated forskolin-stimulated gcg promoter expression in the PKA-active STC-1 cell line and blocked forskolin-stimulated gcg promoter expression in the InR1-G9 cells. Consistently, ESCA was shown to stimulate glucagon and GLP-1 production in the InR1-G9 and GLUTag cell lines, respectively. Surprisingly, ESCA treatment did not show a notable stimulation of glucagon or GLP-1 secretion from these two cell lines. This is in contrast to its ability to stimulate insulin secretion from the pancreatic INS-1 beta-cell line. Our findings suggest that Epac is selectively involved in peptide hormone secretion in pancreatic and intestinal endocrine cells and that distinct signaling cascades are involved in stimulating production vs. secretion of glucagon and GLP-1 in response to cAMP elevation.
Epac和PKA都是第二信使环磷酸腺苷(cAMP)的效应器。我们之前利用一种由cAMP直接激活的交换蛋白(Epac)途径特异性cAMP类似物(ESCA)报道,Epac信号传导调节胰高血糖素样肽-1(GLP-1)产生细胞系GLUTag和STC-1中胰高血糖素原基因(gcg)的表达。我们现在表明,Epac-2也在产生胰高血糖素的胰腺α细胞系中表达,包括PKA缺陷的InR1-G9细胞,并且ESCA刺激InR1-G9细胞中的gcg启动子和mRNA表达。使用显性负性Epac-2表达质粒(Epac-2DN),我们发现Epac抑制减弱了PKA活性的STC-1细胞系中福斯可林刺激的gcg启动子表达,并阻断了InR1-G9细胞中福斯可林刺激的gcg启动子表达。一致地,ESCA分别在InR1-G9和GLUTag细胞系中刺激胰高血糖素和GLP-1的产生。令人惊讶的是,ESCA处理并未显示出对这两种细胞系中胰高血糖素或GLP-1分泌的显著刺激。这与其刺激胰腺INS-1β细胞系胰岛素分泌的能力形成对比。我们的研究结果表明,Epac选择性地参与胰腺和肠道内分泌细胞中的肽激素分泌,并且不同的信号级联参与响应cAMP升高刺激胰高血糖素和GLP-1的产生与分泌。