The K+-ATP channel-independent pathway of regulation of insulin secretion by glucose -: In search of the underlying mechanism

被引:97
|
作者
Sato, Y [1 ]
Henquin, JC [1 ]
机构
[1] Univ Louvain, Unite Endocrinol & Metab, B-1200 Brussels, Belgium
关键词
D O I
10.2337/diabetes.47.11.1713
中图分类号
R5 [内科学];
学科分类号
1002 ; 100201 ;
摘要
By closing ATP-sensitive K+ (K+-ATP) channels, glucose promotes depolarization-dependent Ca2+ entry and cytoplasmic free Ca2+ concentration ([Ca2+](i)) rise in beta-cells. Ca2+-dependent exocytosis of insulin granules is then potentiated by a K+-ATP channel-independent action of glucose. The underlying mechanisms of this second pathway are still unclear. They were studied by incubating normal mouse islets in the presence of diazoxide to open K+-ATP channels and 30 mmol/l K+ to restore Ca2+ entry. The effect of glucose did not require priming of beta-cells by preincubation in the presence of high glucose and could not be attributed to interaction of the sugar with a "glucoreceptor." There is no evidence that protein kinases A and C are involved in the K+-ATP channel-independent pathway, because inhibitors of the kinases did not alter the effect of glucose. In 3 mmol/l glucose, fatty acids did not influence K+-induced insulin secretion, even in the presence of bromopalmitate, an inhibitor of fatty acid oxidation. Bromopalmitate alone had no effect, but it decreased the potentiation that the fatty acids produce in 20 mmol/l glucose. It is thus unlikely that long-chain acyl CoAs mediate the effect of glucose. The action of glucose was not associated with an increase in arachidonic acid release from the islets and was not mimicked by exogenous arachidonic acid. Phospholipase A, inhibitors antagonized the effect of glucose, but their action was not reversed by arachidonic acid or palmitate and was associated with a fall in islet ATP. No evidence could be found for the intervention of NO, cGMP, Mg, phosphate, phosphatidylinositol 3-kinase, or pertussis toxin-sensitive G-proteins. Formycin A, an adenosine analog that is converted to formycin A-triphosphate in islets, increased insulin secretion in the absence and presence of glucose. In conclusion, the present and our previous results strongly suggest that among all known potential second messengers, adenine nucleotides are the best candidates as regulators of insulin secretion through the K+-ATP channel-independent pathway.
引用
收藏
页码:1713 / 1721
页数:9
相关论文
共 50 条
  • [31] The RabGAP TBC1D1 regulates glucose-stimulated insulin secretion in isolated mouse islets by modulating K+-ATP channel function
    Stermann, T.
    Menzel, F.
    Weidlich, C.
    Jeruschke, K.
    Weiss, J.
    Pujol, A.
    Bosch, F.
    Rustenbeck, I.
    Chadt, A.
    Al-Hasani, H.
    DIABETOLOGIA, 2016, 59 : S222 - S223
  • [32] Glucose-induced insulin secretion: is the small G-protein Rab27A the mediator of the KATP channel-independent effect?
    Ullrich, Susanne
    JOURNAL OF PHYSIOLOGY-LONDON, 2008, 586 (22): : 5291 - 5291
  • [33] A key role of protein acylation in K+ATP channel-independent, nutrient stimulation of insulin release:: A study in rat pancreatic islets
    Yamada, S
    Komatsu, M
    Yajima, H
    Sato, Y
    Yamauchi, K
    Aizawa, T
    Hashizume, K
    DIABETES, 2000, 49 : A249 - A249
  • [34] Insulin and Zinc Regulation of Glucagon Secretion during Glucose Deprivation Requires K-ATP Channels
    Slucca, Michela
    Harmon, Jamie S.
    Oseid, Elizabeth
    Bryan, Joseph
    Robertson, R. Paul
    DIABETES, 2009, 58 : A35 - A36
  • [35] Methyl-pyruvate initiates insulin release by a K+ATP -channel independent mechanism.
    Lembert, N
    Joos, HC
    Ammon, HPT
    Wahl, MA
    DIABETOLOGIA, 1999, 42 : A140 - A140
  • [36] A new experimental model of ATP-sensitive K+ channel-independent insulinotropic action of glucose: a permissive role of cAMP for triggering of insulin release from rat pancreatic β-cells
    Takei, Masahiro
    Dezaki, Katsuya
    Ishii, Hiroaki
    Nishio, Shin-ichi
    Sato, Yoshihiko
    Suzuki, Satoru
    Yada, Toshihiko
    Komatsu, Mitsuhisa
    ENDOCRINE JOURNAL, 2013, 60 (05) : 599 - 607
  • [37] Evaluation of the KATP channel-independent pathway of insulin exocytosis in two rodent models of Type 2 diabetes
    Giroix, MH
    Szkudelski, T
    Portha, B
    DIABETOLOGIA, 2003, 46 : A157 - A157
  • [38] Apigenin potentiates glucose-stimulated insulin secretion through the PKA-MEK kinase signaling pathway independent of K-ATP channels
    Shahab, Falak
    Hameed, Abdul
    Ali, Akhtar
    Imad, Rehan
    Hafizur, Rahman M.
    BIOMEDICINE & PHARMACOTHERAPY, 2024, 177
  • [39] Glucose triggers protein kinase A-dependent insulin secretion in mouse pancreatic islets through activation of the K+ATP channel-dependent pathway
    Thams, P
    Anwar, MR
    Capito, K
    EUROPEAN JOURNAL OF ENDOCRINOLOGY, 2005, 152 (04) : 671 - 677
  • [40] Glucose regulation of insulin secretion independent of the opening or closure of adenosine triphosphate-sensitive K+ channels in β cells
    Sato, Y
    Anello, M
    Henquin, JC
    ENDOCRINOLOGY, 1999, 140 (05) : 2252 - 2257