期刊论文详细信息
Endocrine Journal
Sphingosine 1-Phosphate Stimulates Insulin Secretion in HIT-T 15 Cells and Mouse Islets
HIDEAKI TOMURA4  TAKAO KIMURA3  HIROKI TAKAHASHI1  KOICHI SATO2  KEN-ICHI OHTANI1  HIROYUKI SHIMIZU1  TAKAHUMI TSUCHIYA1  MASATOMO MORI1  ATSUSHI KUWABARA3  FUMIKAZU OKAJIMA2 
[1] The First Department of Internal Medicine, Gunma University School of Medicine;Laboratory of Signal Transduction, Gunma University;Department of Laboratory Medicine, Gunma University School of Medicine;Laboratory of Molecular Genetics, Institute for Molecular and Cellular Regulation, Gunma University
关键词: Sphingosine;    Insulin;    Ca2+;    Phospholipase C;    G-Protein;   
DOI  :  10.1507/endocrj.47.261
学科分类:内分泌与代谢学
来源: Japan Endocrine Society
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【 摘 要 】

References(37)Cited-By(11)Sphingosine is involved in the regulation of cellular processes as a second messenger in various kinds of cells. Since the possible involvement of sphingosine has not been investigated in pancreatic β-cells, we determined the expression of putative sphingosine 1-phosphate (S1P) receptors and the effect of sphingosine on pancreatic β-cell function using a clonal Hamster β-cell line, HIT-T 15 cells and isolated mouse islets. We showed the expression of putative S1P receptors, Edg-3 and AGR16/H218 in HIT-T 15 cells. Ten and 20μM S1P significantly stimulated insulin secretion for 10 minutes in HIT-T 15 cells. Ten μM S1P significantly increased insulin secretion from isolated mouse islets. Ten μM S1P obviously increased intracellular Ca2+ concentration ([Ca2+]i). Fifty nM nifedipine did not affect the S1P stimulation of insulin secretion in HIT-T 15 cells. Two μM U73122 (phospholipase C inhibitor) completely deleted 10μM S1P-induced stimulation of insulin secretion for 10 minutes, but U73343 (an inactive analogue of U73122) did not. S1P dose-dependently inhibited intracellular cyclic AMP levels. Pretreatment with 100ng/ml pertussis toxin (PTX) partially, but significantly attenuated an increase of insulin secretion by 10μM S1P. These data suggested that PTX-sensitive G-protein-dependent pathway may, at least in part, be involved in an increase of non-glucose stimulated insulin secretion by S1P through the activation of phospholipase C- Ca2+ system.

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