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胰高血糖素样肽1(GLP-1)受体的第三个胞质结构域发生突变,可在功能上使HIT-T15细胞中GLP-1刺激的胰岛素分泌解偶联。

Mutations to the third cytoplasmic domain of the glucagon-like peptide 1 (GLP-1) receptor can functionally uncouple GLP-1-stimulated insulin secretion in HIT-T15 cells.

作者信息

Salapatek A M, MacDonald P E, Gaisano H Y, Wheeler M B

机构信息

Department of Medicine and Physiology, University of Toronto, Ontario, Canada.

出版信息

Mol Endocrinol. 1999 Aug;13(8):1305-17. doi: 10.1210/mend.13.8.0321.

DOI:10.1210/mend.13.8.0321
PMID:10446905
Abstract

Glucagon-like peptide-1 (GLP-1) is an insulinotropic hormone with powerful antidiabetogenic effects that are thought to be mediated by adenylyl cyclase (AC). Recently, we generated two GLP-1 receptor mutant isoforms (IC3-1 and DM-1) that displayed efficient ligand binding and the ability to promote Ca2+ mobilization from intracellular stores but lacked the ability to couple to AC. In the present study, the wild-type rat GLP-1 receptor (WT-GLP-1 R) or the IC3-1 and DM-1 mutant forms were expressed for the first time in the insulin-producing HIT-T15 cells. Only cells expressing WT-GLP-1 R displayed dramatically elevated GLP-1-induced cAMP responses and elevated insulin secretion. The increase in GLP-1-stimulated secretion in cells expressing WT-GLP-1 R, however, was not accompanied by differences in glucose-stimulated insulin release. Prolonged exposure to GLP-1 (10 nM, 17 h), not only led to an increase in insulin secretion but also increased insulin mRNA levels, but only in cells expressing the WT-GLP-1 R and not the mutant isoforms. Electrophysiological analyses revealed that GLP-1 application enhanced L-type voltage-dependent Ca2+ channel (VDCC) currents > 2-fold and caused a positive shift in VDCC voltage-dependent inactivation in WT-GLP-1R cells only, not control or mutant (DM-1) cells. This action on the Ca2+ current was further enhanced by the VDCC agonist, BAYK8644, suggesting GLP-1 acts via a distinct mechanism dependent on cAMP. These studies demonstrate that the GLP-1 receptor efficiently couples to AC to stimulate insulin secretion and that receptors lacking critical residues in the proximal region of the third intracellular loop can effectively uncouple the receptor from cAMP production, VDCC activity, insulin secretion, and insulin biosynthesis.

摘要

胰高血糖素样肽-1(GLP-1)是一种具有强大抗糖尿病作用的促胰岛素分泌激素,其作用被认为是由腺苷酸环化酶(AC)介导的。最近,我们生成了两种GLP-1受体突变异构体(IC3-1和DM-1),它们表现出高效的配体结合能力以及促进细胞内储存的Ca2+动员的能力,但缺乏与AC偶联的能力。在本研究中,野生型大鼠GLP-1受体(WT-GLP-1 R)或IC3-1和DM-1突变形式首次在产生胰岛素的HIT-T15细胞中表达。只有表达WT-GLP-1 R的细胞显示出GLP-1诱导的cAMP反应显著升高以及胰岛素分泌增加。然而,在表达WT-GLP-1 R的细胞中,GLP-1刺激的分泌增加并未伴随着葡萄糖刺激的胰岛素释放的差异。长时间暴露于GLP-1(10 nM,17小时),不仅导致胰岛素分泌增加,还增加了胰岛素mRNA水平,但仅在表达WT-GLP-1 R的细胞中,而非突变异构体的细胞中。电生理分析表明,仅在WT-GLP-1R细胞中,应用GLP-1可使L型电压依赖性Ca2+通道(VDCC)电流增强>2倍,并导致VDCC电压依赖性失活发生正向偏移,而在对照或突变(DM-1)细胞中则无此现象。VDCC激动剂BAYK8644进一步增强了对Ca2+电流的这种作用,表明GLP-1通过一种依赖于cAMP的独特机制发挥作用。这些研究表明,GLP-1受体有效地与AC偶联以刺激胰岛素分泌,并且在第三细胞内环近端区域缺乏关键残基的受体可有效地使受体与cAMP产生、VDCC活性、胰岛素分泌和胰岛素生物合成解偶联。

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