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Linoleic Acid Activates GPR40/FFA1 and Phospholipase C to Increase [Ca^(2+)]_i Release and Insulin Secretion in Islet Beta-Cells 被引量:2

Linoleic Acid Activates GPR40/FFA1 and Phospholipase C to Increase [Ca^(2+)]_i Release and Insulin Secretion in Islet Beta-Cells
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摘要 Objective To elucidate GPR40/FFA1 and its downstream signaling pathways in regulating insulin secretion. Methods GPR40/FFA1 expression was detected by immunofluorescence imaging. We employed linoleic acid (LA), a free fatty acid that has a high affinity to the rat GPR40, and examined its effect on cytosolic free calcium concentration ([Ca2+]i) in primary rat β-cells by Fluo-3 intensity under confocal microscopy recording. Downregulation of GPR40/FFA1 expression by antisense oligonucleotides was performed in pancreatic β-cells, and insulin secretion was assessed by enzyme-linked immunosorbent assay. Results LA acutely stimulated insulin secretion from primary cultured rat pancreatic islets. LA induced significant increase of [Ca2+]i in the presence of 5.6 mmol/L and 11.1 mmol/L glucose, which was reflected by increased Fluo-3 intensity under confocal microscopy recording. LA-stimulated increase in [Ca2+]i and insulin secretion were blocked by inhibition of GPR40/FFA1 expression in β-cells after GPR40/FFA1-specific antisense treatment. In addition, the inhibition of phospholipase C (PLC) activity by U73122, PLC inhibitor, also markedly inhibited the LA-induced [Ca2+]i increase. Conclusion LA activates GPR40/FFA1 and PLC to stimulate Ca2+ release, resulting in an increase in [Ca2+]i and insulin secretion in rat islet β-cells. Objective To elucidate GPR40/FFA1 and its downstream signaling pathways in regulating insulin secretion. Methods GPR40/FFA1 expression was detected by immunofluorescence imaging. We employed linoleic acid (LA), a free fatty acid that has a high affinity to the rat GPR40, and examined its effect on cytosolic free calcium concentration ([Ca^2+]i) in primary rat β-cells by Fluo-3 intensity under confocal microscopy recording. Downregulation of GPR40/FFA1 expression by antisense oligonucleotides was performed in pancreatic β-cells, and insulin secretion was assessed by enzyme-linked immunosorbent assay. Results LA acutely stimulated insulin secretion from primary cultured rat pancreatic islets. LA induced significant increase of [Ca^2+]i in the presence of 5.6 mmol/L and 11.1 mmol/L glucose, which was reflected by increased Fluo-3 intensity under confocal microscopy recording. LA-stimulated increase in [Ca^2+]i and insulin secretion were blocked by inhibition of GPR40/FFA1 expression in β-cells after GPR40/FFA1-specific antisense treatment. In addition, the inhibition of phospholipase C (PLC) activity by U73122, PLC inhibitor, also markedly inhibited the LA-induced [Ca^2+]i increase. Conclusion LA activates GPR40/FFA1 and PLC to stimulate Ca^2+ release, resulting in an increase in [Ca^2+]i and insulin secretion in rat islet β-cells.
出处 《Chinese Medical Sciences Journal》 CAS CSCD 2012年第1期18-23,共6页 中国医学科学杂志(英文版)
基金 Supported by Grant from Department of Education of Liaoning Province (2008810)
关键词 胰岛素分泌 胰岛β细胞 磷脂酶C 亚油酸 激活 共聚焦显微镜 酶联免疫吸附 游离脂肪酸 GPR40 / FFA 1 phospholipase C antisense oligonucleotides intracellular calcium linoleic acid
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  • 1Katsuma S,Hatae N,Yano T. Free fatty acids inhibit serum deprivation-induced apoptosis through GPR120 in a murine enteroendocrine cell line STC-1[J].Journal of Biological Chemistry,2005,(20):19507-19515.doi:10.1074/jbc.M412385200.
  • 2Itoh Y,Kawamata Y,Harada M. Free fatty acids regulate insulin secretion from pancreatic beta cells through GPR40[J].Nature,2003.173-176.doi:10.1038/nature01478.
  • 3Del Guerra S,Bugliani M,D'Aleo V. G-proteincoupled receptor 40 (GPR40) expression and its regulation in human pancreatic islets:the role of type 2 diabetes and fatty acids[J].Nutrition Metabolism and Cardiovascular Diseases,2010.22-25.
  • 4Shapiro H,Shachar S,Sekler I. Role of GPR40 in fatty acid action on the beta cell line INS-1E[J].Biochemical and Biophysical Research Communications,2005,(1):97-104.doi:10.1016/j.bbrc.2005.07.042.
  • 5Schnell S,Schaefer M,Sch(o)fl C. Free fatty acids increase cytosolic free calcium and stimulate insulin secretion from β-cells through activation of GPR40[J].Molecular and Cellular Endocrinology,2007,(1/2):173-180.doi:10.1016/j.mce.2006.09.013.
  • 6Wilding JP. The importance of free fatty acids in the development of type 2 diabetes[J].Diabetic Medicine,2007.934-945.
  • 7Cnop M. Fatty acids and glucolipotoxicity in the pathogenesis of type 2 diabetes[J].Biochemical Society Transactions,2008.348-352.
  • 8Komatsu M,Schermerhorn T,Noda M. Augmentation of insulin release by glucose in the absence of extracellular Ca2+:new insights into stimulus-secretion coupling[J].Diabetes,1997.1928-1938.doi:10.2337/diabetes.46.12.1928.
  • 9Brownlie R,Mayers RM,Pierce JA. The long-chain fatty acid receptor,GPR40,and glucolipotoxicity:investigations using GPR40-knockout mice[J].Biochemical Society Transactions,2008,(pt 5):950-954.doi:10.1042/BST0360950.
  • 10Hughes AR,Putney JW Jr. Inositol phosphate formation and its relationship to calcium signaling[J].Environmental Health Perspectives,1990.141-147.doi:10.1289/ehp.9084141.

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