ATP-independent anoxic activation of ATP-sensitive K+ channels in dorsal vagal neurons of juvenile mice in situ

被引:29
作者
Müller, M [1 ]
Brockhaus, J [1 ]
Ballanyi, K [1 ]
机构
[1] Univ Gottingen, Inst Physiol 2, D-37073 Gottingen, Germany
关键词
hypoxia; ischemia; K-ATP; redox state; phospholipid; cytochalasin;
D O I
10.1016/S0306-4522(01)00498-5
中图分类号
Q189 [神经科学];
学科分类号
071006 ;
摘要
The role of ATP in anoxic activation of ATP-sensitive K+ (K-ATP) channels was studied in dorsal vagal neurons of mouse brainstem slices. In the whole-cell configuration, cyanide-induced chemical anoxia evoked within 10 s a 300-pA outward current that gave rise to a hyperpolarization of 24 mV. These responses were mimicked by nitrogen-aerated saline, rotenone or diazoxide and abolished by tolbutamide. The cyanide-induced hyperpolarization was due to activation of 70 pS K-ATP channels that were half-maximally blocked by 5 muM internal ATP, Dialyzing the cells with either 1, 20 or 0 mM ATP did not, however, affect the time to onset, the kinetics or the magnitude of the cyanide-induced hyperpolarization. Impairment of ATP consumption by ouabain, vanadate or reduced temperature had no effect either. Thus, anoxia-induced activation of these K-ATP channels cannot be explained by a fall of cellular ATP or a concomitant rise of ADP. Anoxia-related changes of the actin cytoskeleton or the composition of the plasma membrane are also not likely to be involved, as cytochalasin D did not affect the cyanide-evoked hyperpolarization and phosphatidylinositol 4,5-bisphosphate failed to decrease the ATP sensitivity of single K-ATP channels. Finally, because of a lack of effects of reduced/oxidized glutathione and the oxidase blocker diphenyliodonium on the cyanide-induced hyperpolarization, cellular redox state does not appear to be involved. Our results indicate that despite a high sensitivity to ATP in excised patches, anoxic activation of K-ATP channels is independent of cellular ATP. Rather the ATP block seems to be removed as a consequence of impaired mitochondrial function. (C) 2002 IBRO. Published by Elsevier Science Ltd. All rights reserved.
引用
收藏
页码:313 / 328
页数:16
相关论文
共 74 条
[1]   Correlating structure and function in ATP-sensitive K+ channels [J].
Ashcroft, FM ;
Gribble, FM .
TRENDS IN NEUROSCIENCES, 1998, 21 (07) :288-294
[2]   PROPERTIES AND FUNCTIONS OF ATP-SENSITIVE K-CHANNELS [J].
ASHCROFT, SJH ;
ASHCROFT, FM .
CELLULAR SIGNALLING, 1990, 2 (03) :197-214
[3]   A view of SUR/KIR6.X, KATP channels [J].
Babenko, AP ;
Aguilar-Bryan, L ;
Bryan, J .
ANNUAL REVIEW OF PHYSIOLOGY, 1998, 60 :667-687
[4]   Intracellular Ca2+ during metabolic activation of KATP channels in spontaneously active dorsal vagal neurons in medullary slices [J].
Ballanyi, K ;
Kulik, A .
EUROPEAN JOURNAL OF NEUROSCIENCE, 1998, 10 (08) :2574-2585
[5]   Membrane potentials and microenvironment of rat dorsal vagal cells in vitro during energy depletion [J].
Ballanyi, K ;
Doutheil, J ;
Brockhaus, J .
JOURNAL OF PHYSIOLOGY-LONDON, 1996, 495 (03) :769-784
[6]   PIP2 and PIP as determinants for ATP inhibition of KATP channels [J].
Baukrowitz, T ;
Schulte, U ;
Oliver, D ;
Herlitze, S ;
Krauter, T ;
Tucker, SJ ;
Ruppersberg, JP ;
Fakler, B .
SCIENCE, 1998, 282 (5391) :1141-1144
[7]   CHANGES OF MEMBRANE CURRENTS IN CARDIAC-CELLS INDUCED BY LONG WHOLE-CELL RECORDINGS AND TOLBUTAMIDE [J].
BELLES, B ;
HESCHELER, J ;
TRUBE, G .
PFLUGERS ARCHIV-EUROPEAN JOURNAL OF PHYSIOLOGY, 1987, 409 (06) :582-588
[8]   GALANIN AND GLIBENCLAMIDE MODULATE THE ANOXIC RELEASE OF GLUTAMATE IN RAT CA3 HIPPOCAMPAL-NEURONS [J].
BENARI, Y .
EUROPEAN JOURNAL OF NEUROSCIENCE, 1990, 2 (01) :62-68
[9]   A disrupter of actin microfilaments impairs sulfonylurea-inhibitory gating of cardiac K-ATP channels [J].
Brady, PA ;
Alekseev, AE ;
Aleksandrova, LA ;
Gomez, LA ;
Terzic, A .
AMERICAN JOURNAL OF PHYSIOLOGY-HEART AND CIRCULATORY PHYSIOLOGY, 1996, 271 (06) :H2710-H2716
[10]   MICROENVIRONMENT OF RESPIRATORY NEURONS IN THE INVITRO BRAIN-STEM-SPINAL CORD OF NEONATAL RATS [J].
BROCKHAUS, J ;
BALLANYI, K ;
SMITH, JC ;
RICHTER, DW .
JOURNAL OF PHYSIOLOGY-LONDON, 1993, 462 :421-445