Thomas M K, Lee J H, Rastalsky N, Habener J F
Laboratory of Molecular Endocrinology, Massachusetts General Hospital, Harvard Medical School, Boston, Massachusetts 02114, USA.
Endocrinology. 2001 Mar;142(3):1033-40. doi: 10.1210/endo.142.3.8007.
Insulin gene expression in pancreatic beta-cells is regulated by signals from developmental morphogen proteins known as hedgehogs (Hhs). By analyzing 5'-deletion insulin promoter-reporter constructs in transient transfections of clonal INS-1 beta-cells, we located activating Hh-responsive regions within the rat insulin I promoter that include the glucose-response elements Far (E2) and Flat (A2/A3). Activation of Hh signaling in INS-1 cells by ectopic Hh expression increased (and inhibition of Hh signaling with the Hh-specific inhibitor cyclopamine decreased) transcriptional activation of a multimerized FarFlat enhancer-reporter construct. In DNA-binding studies, nuclear extracts from INS-1 cells activated by ectopic Hh expression increased (and extracts from INS-1 cells treated with cyclopamine decreased) protein binding to a radiolabeled FarFlat oligonucleotide probe. An antiserum directed against the transcription factor islet duodenum homeobox-1 (IDX-1), a regulator of pancreas development and activator of the insulin gene promoter, attenuated the binding activity of Hh-responsive protein complexes. Nuclear IDX-1 protein levels on Western blots were increased by ectopic Hh expression, thereby providing a mechanism for Hh-mediated regulation of the insulin promoter. Addition of cyclopamine to INS-1 cells decreased IDX-1 messenger RNA expression. In transient transfections of a -4.5-kb mouse IDX-1 promoter-reporter construct, ectopic Hh expression increased (and cyclopamine administration decreased) transcriptional activation of the IDX-1 promoter in a dose-dependent manner. Thus, the IDX-1 gene is a direct regulatory target of Hh signaling in insulin-producing pancreatic beta-cells. We propose that Hh signaling activates the insulin gene promoter indirectly via the direct activation of IDX-1 expression. Because IDX-1 gene expression is essential for insulin gene expression, pancreatic beta-cell development, and normal glucose homeostasis, our findings that Hh signaling regulates IDX-1 expression in the endocrine pancreas suggest possible novel therapeutic approaches for diabetes mellitus.
胰腺β细胞中的胰岛素基因表达受来自被称为刺猬蛋白(Hhs)的发育形态发生蛋白发出的信号调控。通过在克隆的INS-1β细胞瞬时转染中分析5'-缺失胰岛素启动子-报告基因构建体,我们在大鼠胰岛素I启动子中定位到了激活的Hh反应区域,其中包括葡萄糖反应元件Far(E2)和平行元件(A2/A3)。通过异位表达Hh激活INS-1细胞中的Hh信号传导增加了(而用Hh特异性抑制剂环杷明抑制Hh信号传导则降低了)多聚化FarFlat增强子-报告基因构建体的转录激活。在DNA结合研究中,异位表达Hh激活的INS-1细胞的核提取物增加了(而用环杷明处理的INS-1细胞的提取物则降低了)与放射性标记的FarFlat寡核苷酸探针的蛋白结合。一种针对转录因子胰岛十二指肠同源盒-1(IDX-1)的抗血清,它是胰腺发育的调节因子和胰岛素基因启动子的激活剂,减弱了Hh反应性蛋白复合物的结合活性。通过异位表达Hh增加了蛋白质印迹上的核IDX-1蛋白水平,从而为Hh介导的胰岛素启动子调控提供了一种机制。向INS-1细胞中添加环杷明降低了IDX-1信使RNA的表达。在-4.5-kb小鼠IDX-1启动子-报告基因构建体的瞬时转染中,异位表达Hh以剂量依赖的方式增加了(而给予环杷明则降低了)IDX-1启动子的转录激活。因此,IDX-1基因是胰岛素产生胰腺β细胞中Hh信号传导的直接调控靶点。我们提出Hh信号传导通过直接激活IDX-1表达间接激活胰岛素基因启动子。由于IDX-1基因表达对于胰岛素基因表达、胰腺β细胞发育和正常葡萄糖稳态至关重要,我们关于Hh信号传导调节内分泌胰腺中IDX-1表达的发现提示了糖尿病可能的新治疗方法。