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PMID: 17503968 Published · ppublish English Journal Article Research Support, Non-U.S. Gov't

A K ATP channel-dependent pathway within alpha cells regulates glucagon release from both rodent and human islets of Langerhans.

PLoS biology ·Vol. 5 ·No. 6 ·2007-06-00 ·Pages e143

MacDonald PE, De Marinis YZ, Ramracheya R, Salehi A, Ma X, Johnson PR, Cox R, Eliasson L, Rorsman P

Abstract

Glucagon, secreted from pancreatic islet alpha cells, stimulates gluconeogenesis and liver glycogen breakdown. The mechanism regulating glucagon release is debated, and variously attributed to neuronal control, paracrine control by neighbouring beta cells, or to an intrinsic glucose sensing by the alpha cells themselves. We examined hormone secretion and Ca(2+) responses of alpha and beta cells within intact rodent and human islets. Glucose-dependent suppression of glucagon release persisted when paracrine GABA or Zn(2+) signalling was blocked, but was reversed by low concentrations (1-20 muM) of the ATP-sensitive K(+) (KATP) channel opener diazoxide, which had no effect on insulin release or beta cell responses. This effect was prevented by the KATP channel blocker tolbutamide (100 muM). Higher diazoxide concentrations (>/=30 muM) decreased glucagon and insulin secretion, and alpha- and beta-cell Ca(2+) responses, in parallel. In the absence of glucose, tolbutamide at low concentrations (<1 muM) stimulated glucagon secretion, whereas high concentrations (>10 muM) were inhibitory. In the presence of a maximally inhibitory concentration of tolbutamide (0.5 mM), glucose had no additional suppressive effect. Downstream of the KATP channel, inhibition of voltage-gated Na(+) (TTX) and N-type Ca(2+) channels (omega-conotoxin), but not L-type Ca(2+) channels (nifedipine), prevented glucagon secretion. Both the N-type Ca(2+) channels and alpha-cell exocytosis were inactivated at depolarised membrane potentials. Rodent and human glucagon secretion is regulated by an alpha-cell KATP channel-dependent mechanism. We propose that elevated glucose reduces electrical activity and exocytosis via depolarisation-induced inactivation of ion channels involved in action potential firing and secretion.

MeSH Terms
Animals Calcium/metabolism Calcium Channels, N-Type/metabolism Exocytosis/physiology Female Glucagon/metabolism Glucagon-Secreting Cells/metabolism Glucose/metabolism Humans Mice Mice, Inbred BALB C Mice, Knockout Potassium Channels/metabolism Sodium Channels/metabolism
Chemicals
Calcium Channels, N-Type Potassium Channels Sodium Channels Glucagon Glucose Calcium
Authors & Affiliations
9 authors, click to expand affiliations / ORCID
MacDonald Patrick E
Oxford Centre for Diabetes, Endocrinology and Metabolism, University of Oxford, Oxford, United Kingdom. [email protected]
De Marinis Yang Zhang
Ramracheya Reshma
Salehi Albert
Ma Xiaosong
Johnson Paul R V
Cox Roger
Eliasson Lena
Rorsman Patrik
References (58)
58 references, click to expand
  1. Serum glucagon counterregulatory hormonal response to hypoglycemia is blunted in congenital hyperinsulinism.
    Diabetes. 2005 Oct;54(10):2946-51 PMID: 16186397
  2. Glucose stimulates glucagon release in single rat alpha-cells by mechanisms that mirror the stimulus-secretion coupling in beta-cells.
    Endocrinology. 2005 Nov;146(11):4861-70 PMID: 16081632
  3. Sulfonylurea-binding sites and ATP-sensitive K+ channels in alpha-TC glucagonoma and beta-TC insulinoma cells.
    Diabetes. 1993 Dec;42(12):1760-72 PMID: 8243822
  4. Calcium dependency of glucagon release: its modulation by nutritional factors.
    Am J Physiol. 1979 Feb;236(2):E98-104 PMID: 369392
  5. Glucose-sensing mechanisms in pancreatic beta-cells.
    Philos Trans R Soc Lond B Biol Sci. 2005 Dec 29;360(1464):2211-25 PMID: 16321791
  6. Glucose inhibition of glucagon secretion from rat alpha-cells is mediated by GABA released from neighboring beta-cells.
    Diabetes. 2004 Apr;53(4):1038-45 PMID: 15047619
  7. The actions of arginine and glucose on glucagon secretion are mediated by opposite effects on cytoplasmic Ca2+.
    Biochem Biophys Res Commun. 1987 Aug 31;147(1):309-14 PMID: 3307774
  8. Capacitance measurements of exocytosis in mouse pancreatic alpha-, beta- and delta-cells within intact islets of Langerhans.
    J Physiol. 2004 May 1;556(Pt 3):711-26 PMID: 14966302
  9. Diverse causes of hypoglycemia-associated autonomic failure in diabetes.
    N Engl J Med. 2004 May 27;350(22):2272-9 PMID: 15163777
  10. Defective glucose counterregulation after subcutaneous insulin in noninsulin-dependent diabetes mellitus. Paradoxical suppression of glucose utilization and lack of compensatory increase in glucose production, roles of insulin resistance, abnormal neuroendocrine responses, and islet paracrine interactions.
    J Clin Invest. 1984 Jun;73(6):1532-41 PMID: 6373827
  11. ATP-sensitive K+ channel-dependent regulation of glucagon release and electrical activity by glucose in wild-type and SUR1-/- mouse alpha-cells.
    Diabetes. 2004 Dec;53 Suppl 3:S181-9 PMID: 15561909
  12. Cell type-specific activation of metabolism reveals that beta-cell secretion suppresses glucagon release from alpha-cells in rat pancreatic islets.
    Am J Physiol Endocrinol Metab. 2006 Feb;290(2):E308-16 PMID: 16188913
  13. Palmitate stimulation of glucagon secretion in mouse pancreatic alpha-cells results from activation of L-type calcium channels and elevation of cytoplasmic calcium.
    Diabetes. 2004 Nov;53(11):2836-43 PMID: 15504963
  14. Concentration-dependent effects of tolbutamide, meglitinide, glipizide, glibenclamide and diazoxide on ATP-regulated K+ currents in pancreatic B-cells.
    Naunyn Schmiedebergs Arch Pharmacol. 1988 Feb;337(2):225-30 PMID: 2452991
  15. ATP-sensitive K+ channels in the hypothalamus are essential for the maintenance of glucose homeostasis.
    Nat Neurosci. 2001 May;4(5):507-12 PMID: 11319559
  16. Effect of physiological hyperinsulinemia on counterregulatory hormone responses during hypoglycemia in humans.
    J Clin Endocrinol Metab. 1992 Nov;75(5):1293-7 PMID: 1430091
  17. Beta-cell secretory products activate alpha-cell ATP-dependent potassium channels to inhibit glucagon release.
    Diabetes. 2005 Jun;54(6):1808-15 PMID: 15919803
  18. Localized calcium influx in pancreatic beta-cells: its significance for Ca2+-dependent insulin secretion from the islets of Langerhans.
    Endocrine. 2000 Dec;13(3):251-62 PMID: 11216635
  19. Insulin within islets is a physiologic glucagon release inhibitor.
    J Clin Invest. 1984 Dec;74(6):2296-9 PMID: 6392344
  20. Immuno-localization of sulphonylurea receptor 1 in rat pancreas.
    Diabetologia. 1999 Oct;42(10):1204-11 PMID: 10525661
  21. Hypothalamic ATP-sensitive K + channels play a key role in sensing hypoglycemia and triggering counterregulatory epinephrine and glucagon responses.
    Diabetes. 2004 Oct;53(10):2542-51 PMID: 15448082
  22. Glucose-inhibition of glucagon secretion involves activation of GABAA-receptor chloride channels.
    Nature. 1989 Sep 21;341(6239):233-6 PMID: 2550826
  23. The role of calcium in glucagon release. Interactions between arginine and calcium.
    Horm Res. 1976;7(6):348-62 PMID: 1028726
  24. Tight coupling between electrical activity and exocytosis in mouse glucagon-secreting alpha-cells.
    Diabetes. 2000 Sep;49(9):1500-10 PMID: 10969834
  25. Impact of lack of suppression of glucagon on glucose tolerance in humans.
    Am J Physiol. 1999 Aug;277(2 Pt 1):E283-90 PMID: 10444424
  26. Different effects of tolbutamide and diazoxide in alpha, beta-, and delta-cells within intact islets of Langerhans.
    Diabetes. 1999 Dec;48(12):2390-7 PMID: 10580428
  27. Regulation of glucagon release in mouse -cells by KATP channels and inactivation of TTX-sensitive Na+ channels.
    J Physiol. 2000 Nov 1;528(Pt 3):509-20 PMID: 11060128
  28. Glucose inhibits glucagon secretion by a direct effect on mouse pancreatic alpha cells.
    Diabetologia. 2007 Feb;50(2):370-9 PMID: 17136393
  29. Localization of the ATP-sensitive K+ channel subunit Kir6.2 in mouse pancreas.
    Diabetes. 1997 Sep;46(9):1440-4 PMID: 9287044
  30. Hypoglycaemia: the limiting factor in the glycaemic management of Type I and Type II diabetes.
    Diabetologia. 2002 Jul;45(7):937-48 PMID: 12136392
  31. Characterization of voltage-dependent sodium and calcium channels in mouse pancreatic A- and B-cells.
    J Physiol. 2006 May 1;572(Pt 3):691-706 PMID: 16513675
  32. Adrenaline stimulates glucagon secretion in pancreatic A-cells by increasing the Ca2+ current and the number of granules close to the L-type Ca2+ channels.
    J Gen Physiol. 1997 Sep;110(3):217-28 PMID: 9276750
  33. Fluctuations of calcium, phosphorus, sodium, potassium, and chlorine in single alpha and beta cells during glucose perifusion of rat islets.
    J Clin Invest. 1981 Aug;68(2):517-24 PMID: 7021594
  34. In vivo and in vitro effects of somatostatin and insulin on glucagon release in a human glucagonoma.
    Clin Endocrinol (Oxf). 1997 May;46(5):637-42 PMID: 9231061
  35. Characterisation of sulphonylurea and ATP-regulated K+ channels in rat pancreatic A-cells.
    Pflugers Arch. 1999 Sep;438(4):428-36 PMID: 10519134
  36. The use of tolbutamide-induced hypoglycemia to examine the intraislet role of insulin in mediating glucagon release in normal humans.
    J Clin Endocrinol Metab. 1997 May;82(5):1458-61 PMID: 9141533
  37. Insulin regulates islet alpha-cell function by reducing KATP channel sensitivity to adenosine 5'-triphosphate inhibition.
    Endocrinology. 2006 May;147(5):2155-62 PMID: 16455778
  38. Glucose or insulin, but not zinc ions, inhibit glucagon secretion from mouse pancreatic alpha-cells.
    Diabetes. 2005 Jun;54(6):1789-97 PMID: 15919801
  39. Mechanism, temporal patterns, and magnitudes of the metabolic responses to the KATP channel agonist diazoxide.
    Am J Physiol Endocrinol Metab. 2005 Jan;288(1):E80-5 PMID: 15339745
  40. Regulation of alpha-cell function by the beta-cell in isolated human and rat islets deprived of glucose: the "switch-off" hypothesis.
    Diabetes. 2004 Jun;53(6):1488-95 PMID: 15161753
  41. A store-operated mechanism determines the activity of the electrically excitable glucagon-secreting pancreatic alpha-cell.
    Cell Calcium. 2004 Apr;35(4):357-65 PMID: 15036952
  42. Sulfonylurea-induced inhibition of glucagon secretion from the perfused rat pancreas: evidence for a direct, non-paracrine effect.
    Diabetologia. 1986 Dec;29(12):861-7 PMID: 3106122
  43. Regulation of glucagon secretion at low glucose concentrations: evidence for adenosine triphosphate-sensitive potassium channel involvement.
    Endocrinology. 2005 Dec;146(12):5514-21 PMID: 16123162
  44. Islet beta-cell secretion determines glucagon release from neighbouring alpha-cells.
    Nat Cell Biol. 2003 Apr;5(4):330-5 PMID: 12640462
  45. Paradoxical stimulation of glucagon secretion by high glucose concentrations.
    Diabetes. 2006 Aug;55(8):2318-23 PMID: 16873696
  46. A high concentration of circulating insulin suppresses the glucagon response to hypoglycemia in normal man.
    J Clin Endocrinol Metab. 1991 Nov;73(5):1123-8 PMID: 1682339
  47. Loss of the decrement in intraislet insulin plausibly explains loss of the glucagon response to hypoglycemia in insulin-deficient diabetes: documentation of the intraislet insulin hypothesis in humans.
    Diabetes. 2005 Mar;54(3):757-64 PMID: 15734853
  48. Intraislet hyperinsulinemia prevents the glucagon response to hypoglycemia despite an intact autonomic response.
    Diabetes. 2002 Apr;51(4):958-65 PMID: 11916913
  49. A gene-driven ENU-based approach to generating an allelic series in any gene.
    Mamm Genome. 2004 Aug;15(8):585-91 PMID: 15457338
  50. Glucose regulation of glucagon secretion independent of B cell activity.
    Metabolism. 1983 Mar;32(3):292-5 PMID: 6338350
  51. Increased glucose tolerance in N-type Ca2+ channel alpha(1B)-subunit gene-deficient mice.
    Int J Mol Med. 2005 Jun;15(6):937-44 PMID: 15870896
  52. Alpha-cells of the endocrine pancreas: 35 years of research but the enigma remains.
    Endocr Rev. 2007 Feb;28(1):84-116 PMID: 17261637
  53. Impaired glucagon secretory responses in mice lacking the type 1 sulfonylurea receptor.
    Am J Physiol Endocrinol Metab. 2005 Oct;289(4):E570-7 PMID: 15941784
  54. Oscillatory membrane potential response to glucose in islet beta-cells: a comparison of islet-cell electrical activity in mouse and rat.
    Endocrinology. 2006 Oct;147(10):4655-63 PMID: 16857746
  55. In vivo inhibition of glucagon secretion by paracrine beta cell activity in man.
    J Clin Invest. 1981 Jul;68(1):314-8 PMID: 7019246
  56. The prevalent Glu23Lys polymorphism in the potassium inward rectifier 6.2 (KIR6.2) gene is associated with impaired glucagon suppression in response to hyperglycemia.
    Diabetes. 2002 Sep;51(9):2854-60 PMID: 12196481
  57. ATP-sensitive potassium channelopathies: focus on insulin secretion.
    J Clin Invest. 2005 Aug;115(8):2047-58 PMID: 16075046
  58. The Berson memorial lecture. Insulin-glucagon relationships in the defense against hypoglycemia.
    Diabetes. 1983 Jun;32(6):575-83 PMID: 6354785
Article Info
Journal
PLoS biology
Abbr.
PLoS Biol
ISSN
1545-7885
Published
2007-06-00
Pages
e143
Language
English
Region
United States
NLM ID
101183755
PMCID
PMC1868042
Subset
IM
Grants
Wellcome Trust · United Kingdom
Medical Research Council · MC_U142661184 · United Kingdom
Medical Research Council · MC_U142684172 · United Kingdom
Medical Research Council · MC_U142684175 · United Kingdom
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