Signaling mechanisms underlying the release of glucagon-like peptide 1

被引:51
作者
Reimann, Frank [1 ]
Ward, Patrick S. [1 ]
Gribble, Fiona M. [1 ]
机构
[1] Addenbrookes Hosp, Cambridge Inst Med Res, Dept Clin Biochem, Cambridge CB2 2XY, England
关键词
D O I
10.2337/db06-S010
中图分类号
R5 [内科学];
学科分类号
1002 ; 100201 ;
摘要
Glucagon-like peptide-1 (GLP-1) is released from intestinal L-cells in response to a range of nutrients, hormones, and neurotransmitters. Its potency as an insulin secretagogue has led to pharmaceutical interest in developing strategies to enhance GLP-1 receptor activation in type 2 diabetes. A complementary approach, to stimulate endogenous release of GLP-1, would be facilitated by a better understanding of L-cell physiology. Using GLP-1-secreting cell lines such as GLUTag and STC-1, mechanisms underlying GLP-1 release have been identified at a single-cell level. A number of stimuli, including glucose and certain amino acids, result in membrane depolarization and Ca2+ entry through voltage-gated Ca2+ channels. Glucose triggers membrane depolarization both by closing ATP-sensitive potassium channels and because of its uptake by Na+-coupled glucose transporters. Whereas glutamine also triggers depolarization by Na+-coupled uptake, glycine opens Cl- channels on the surface membrane. A number of agents, including fatty acids and hormones, enhance GLP-1 secretion by acting at stages downstream of depolarization. Some of these target G protein-coupled receptors, triggering elevation of cAMP or release of Ca2+ from intracellular stores. Understanding these different pathways and how they could be targeted to maximize GLP-1 secretion may be a step toward developing therapeutic GLP-1 secretagogues.
引用
收藏
页码:S78 / S85
页数:8
相关论文
共 73 条
[1]   Muscarinic receptors control postprandial release of glucagon-like peptide-1:: In vivo and in vitro studies in rats [J].
Anini, Y ;
Hansotia, T ;
Brubaker, PL .
ENDOCRINOLOGY, 2002, 143 (06) :2420-2426
[2]   Interaction between specific fatty acids, GLP-1 and insulin secretion in humans [J].
Beysen, C ;
Karpe, F ;
Fielding, BA ;
Clark, A ;
Levy, JC ;
Frayn, KN .
DIABETOLOGIA, 2002, 45 (11) :1533-1541
[3]   COLOCALIZATION OF L-TYPE CA2+ CHANNELS AND INSULIN-CONTAINING SECRETORY GRANULES AND ITS SIGNIFICANCE FOR THE INITIATION OF EXOCYTOSIS IN MOUSE PANCREATIC B-CELLS [J].
BOKVIST, K ;
ELIASSON, L ;
AMMALA, C ;
RENSTROM, E ;
RORSMAN, P .
EMBO JOURNAL, 1995, 14 (01) :50-57
[4]   FETAL-RAT INTESTINAL-CELLS IN MONOLAYER-CULTURE - A NEW INVITRO SYSTEM TO STUDY THE GLUCAGONLIKE IMMUNOREACTIVE PEPTIDES [J].
BRUBAKER, PL ;
VRANIC, M .
ENDOCRINOLOGY, 1987, 120 (05) :1976-1985
[5]   Regulation of glucagon-like peptide-1 synthesis and secretion in the GLUTag enteroendocrine cell line [J].
Brubaker, PL ;
Schloos, J ;
Drucker, DJ .
ENDOCRINOLOGY, 1998, 139 (10) :4108-4114
[6]   MORPHOLOGICAL AND PHYSIOLOGICAL-STUDIES OF CANINE ILEAL ENTEROGLUCAGON-CONTAINING CELLS IN SHORT-TERM CULTURE [J].
BUCHAN, AMJ ;
BARBER, DL ;
GREGOR, M ;
SOLL, AH .
GASTROENTEROLOGY, 1987, 93 (04) :791-800
[7]   Aberrant regulation of human intestinal proglucagon gene expression in the NCI-H716 cell line [J].
Cao, XM ;
Flock, G ;
Choi, C ;
Irwin, DM ;
Drucker, DJ .
ENDOCRINOLOGY, 2003, 144 (05) :2025-2033
[8]   Peptones stimulate both the secretion of the incretin hormone glucagon-like peptide 1 and the transcription of the proglucagon gene [J].
Cordier-Bussat, M ;
Bernard, C ;
Levenez, F ;
Klages, N ;
Laser-Ritz, B ;
Philippe, J ;
Chayvialle, JA ;
Cuber, JC .
DIABETES, 1998, 47 (07) :1038-1045
[9]   INCRETIN CONCEPT TODAY [J].
CREUTZFELDT, W .
DIABETOLOGIA, 1979, 16 (02) :75-85
[10]   A glucose sensor hiding in a family of transporters [J].
Díez-Sampedro, A ;
Hirayama, BA ;
Osswald, C ;
Gorboulev, V ;
Baumgarten, K ;
Volk, C ;
Wright, EM ;
Koepsell, H .
PROCEEDINGS OF THE NATIONAL ACADEMY OF SCIENCES OF THE UNITED STATES OF AMERICA, 2003, 100 (20) :11753-11758