Expression and function of pancreatic beta-cell delayed rectifier K+ channels - Role in stimulus-secretion coupling

被引:102
作者
Roe, MW
Worley, JF
Mittal, AA
Kuznetsov, A
DasGupta, S
Mertz, RJ
Witherspoon, SM
Blair, N
Lancaster, ME
McIntyre, MS
Shehee, WR
Dukes, ID
Philipson, LH
机构
[1] UNIV CHICAGO,DEPT MED,MC 1027,CHICAGO,IL 60637
[2] GLAXO WELLCOME RES INST,RES TRIANGLE PK,NC 27709
关键词
D O I
10.1074/jbc.271.50.32241
中图分类号
Q5 [生物化学]; Q7 [分子生物学];
学科分类号
071010 ; 081704 ;
摘要
Voltage-dependent delayed rectifier K+ channels regulate aspects of both stimulus-secretion and excitation-contraction coupling, but assigning specific roles to these channels has proved problematic, Using transgenically derived insulinoma cells (beta TC3-neo) and beta-cells purified from rodent pancreatic islets of Langerhans, we studied the expression and role of delayed rectifiers in glucose-stimulated insulin secretion, Using reverse-transcription polymerase chain reaction methods to amplify all known candidate delayed rectifier transcripts, the expression of the K+ channel gene Kv2.1 in beta TC3-neo insulinoma cells and purified rodent pancreatic beta-cells was detected and confirmed by immunoblotting in the insulinoma cells, beta TC3-neo cells were also found to express a related K+ channel, Kv3.2, Whole-cell patch clamp demonstrated the presence of delayed rectifier K+ currents inhibited by tetraethylammonium (TEA) and 4-aminopyridine, with similar K-d values to that of Kv2.1, correlating delayed rectifier gene expression with the K+ currents, The effect of these blockers on intracellular Ca2+ concentration ([Ca2+](i)) was studied with fura-2 microspectrofluorimetry and imaging techniques, In the absence of glucose, exposure to TEA (1-20 mM) had minimal effects on beta TC3-neo or rodent islet [Ca2+](i), but in the presence of glucose, TEA activated large amplitude [Ca2+](i) oscillations. In the insulinoma cells the TEA-induced [Ca2+](i) oscillations were driven by synchronous oscillations in membrane potential, resulting in a 4-fold potentiation of insulin secretion, Activation of specific delayed rectifier K+ channels can therefore suppress stimulus secretion coupling by damping oscillations in membrane potential and [Ca2+](i) and thereby regulate secretion, These studies implicate previously uncharacterized beta-cell delayed rectifier K+ channels in the regulation of membrane repolarization, [Ca2+](i), and insulin secretion.
引用
收藏
页码:32241 / 32246
页数:6
相关论文
共 37 条
[1]   ELECTROPHYSIOLOGY OF THE PANCREATIC BETA-CELL [J].
ASHCROFT, FM ;
RORSMAN, P .
PROGRESS IN BIOPHYSICS & MOLECULAR BIOLOGY, 1989, 54 (02) :87-143
[2]   EXPRESSION OF VOLTAGE-GATED K+ CHANNELS IN INSULIN-PRODUCING CELLS - ANALYSIS BY POLYMERASE CHAIN-REACTION [J].
BETSHOLTZ, C ;
BAUMANN, A ;
KENNA, S ;
ASHCROFT, FM ;
ASHCROFT, SJH ;
BERGGREN, PO ;
GRUPE, A ;
PONGS, O ;
RORSMAN, P ;
SANDBLOM, J ;
WELSH, M .
FEBS LETTERS, 1990, 263 (01) :121-126
[3]   EFFECTS OF EXTERNAL TETRAETHYLAMMONIUM IONS AND QUININE ON DELAYED RECTIFYING K+ CHANNELS IN MOUSE PANCREATIC BETA-CELLS [J].
BOKVIST, K ;
RORSMAN, P ;
SMITH, PA .
JOURNAL OF PHYSIOLOGY-LONDON, 1990, 423 :311-325
[4]   BLOCK OF ATP-REGULATED AND CA-2+-ACTIVATED K+ CHANNELS IN MOUSE PANCREATIC BETA-CELLS BY EXTERNAL TETRAETHYLAMMONIUM AND QUININE [J].
BOKVIST, K ;
RORSMAN, P ;
SMITH, PA .
JOURNAL OF PHYSIOLOGY-LONDON, 1990, 423 :327-342
[5]  
CHANDY KG, 1995, LIGAND VOLTAGE GATED, P1
[6]  
COOK DL, 1984, NATURE, V312, P446
[7]   K+ channels: Generating excitement in pancreatic beta-cells [J].
Dukes, ID ;
Philipson, LH .
DIABETES, 1996, 45 (07) :845-853
[8]  
DUKES ID, 1994, J BIOL CHEM, V269, P10979
[9]   BETA-CELL LINES DERIVED FROM TRANSGENIC MICE EXPRESSING A HYBRID INSULIN GENE ONCOGENE [J].
EFRAT, S ;
LINDE, S ;
KOFOD, H ;
SPECTOR, D ;
DELANNOY, M ;
GRANT, S ;
HANAHAN, D ;
BAEKKESKOV, S .
PROCEEDINGS OF THE NATIONAL ACADEMY OF SCIENCES OF THE UNITED STATES OF AMERICA, 1988, 85 (23) :9037-9041
[10]  
GILON P, 1993, J BIOL CHEM, V268, P22265