HYPOXIC AND METABOLIC-REGULATION OF VOLTAGE-GATED K+ CHANNELS IN RAT PULMONARY-ARTERY SMOOTH-MUSCLE CELLS

被引:45
作者
YUAN, XJ [1 ]
TOD, ML [1 ]
RUBIN, LJ [1 ]
BLAUSTEIN, MP [1 ]
机构
[1] UNIV MARYLAND,SCH MED,DEPT PHYSIOL,BALTIMORE,MD 21201
关键词
D O I
10.1113/expphysiol.1995.sp003888
中图分类号
Q4 [生理学];
学科分类号
071003 ;
摘要
Inhibition of voltage-gated K+ (K-V) channels by 4-aminopyridine (4-AP) depolarizes pulmonary artery (PA) smooth muscle cells, induces Ca2+-dependent action potentials and increases [Ca2+](i). Neither charybdotoxin, which blocks Ca2+ activated K+ channels, nor glibenclamide, which blocks ATP-sensitive K+ channels, has such effects on membrane potential (E(m)) and [Ca2+](i). Hypoxia reversibly decreases the 4-AP-sensitive K-V currents (I-K(V)) in PA myocytes. The resulting membrane depolarization caused by decreased I-K(V) induces Ca2+-dependent action potentials and thereby raises [Ca2+](i). Thus, K-V channel activity plays a critical role in: (a) regulating E(m) and [Ca2+](i) under physiological conditions; and (b) sensing O-2 alteration and transducing the hypoxic stimulus to changes of E(m) and [Ca2+](i). The metabolic inhibitors 2-deoxy-D-glucose (2-DOG; 10 mM) and carbonyl cyanide-p-trifluoromethoxyphenyl-hydrazone (FCCP; 3-5 mu M), the reducing agent reduced glutathione and inhibitors of cytochrome P-450, all mimic the effects of hypoxia on I-K(V) and E(m) in PA myocytes. Furthermore, hypoxia and 2-DOG negligibly affect I-K(V) and E(m) in mesenteric artery smooth muscle cells. These results suggest that hypoxia, perhaps via a localized reduction of ATP, triggers the block of K-V channels and depolarizes PA myocytes. This blockade may also be mediated by a change in cellular redox status, perhaps via a conformational change of a haem- (or metal-) containing regulatory moiety that is attached to the channel protein.
引用
收藏
页码:803 / 813
页数:11
相关论文
共 24 条
[1]   BIOPHYSICAL PROPERTIES OF CA2+-ACTIVATED AND MG-ATP-ACTIVATED K+ CHANNELS IN PULMONARY ARTERIAL SMOOTH-MUSCLE CELLS ISOLATED FROM THE RAT [J].
ALBARWANI, S ;
ROBERTSON, BE ;
NYE, PCG ;
KOZLOWSKI, RZ .
PFLUGERS ARCHIV-EUROPEAN JOURNAL OF PHYSIOLOGY, 1994, 428 (5-6) :446-454
[2]   A REDOX-BASED O2 SENSOR IN RAT PULMONARY VASCULATURE [J].
ARCHER, SL ;
HUANG, J ;
HENRY, T ;
PETERSON, D ;
WEIR, EK .
CIRCULATION RESEARCH, 1993, 73 (06) :1100-1112
[3]  
ARCHER SL, 1989, PULMONARY VASCULAR P, V38, P241
[4]  
BARNES PJ, 1995, PHARMACOL REV, V47, P87
[5]  
Bradford J R, 1894, J Physiol, V16, P34
[6]   OUTWARD CURRENTS IN RABBIT PULMONARY-ARTERY CELLS DISSOCIATED WITH A NEW TECHNIQUE [J].
CLAPP, LH ;
GURNEY, AM .
EXPERIMENTAL PHYSIOLOGY, 1991, 76 (05) :677-693
[7]   ATP-SENSITIVE K+ CHANNELS REGULATE RESTING POTENTIAL OF PULMONARY ARTERIAL SMOOTH-MUSCLE CELLS [J].
CLAPP, LH ;
GURNEY, AM .
AMERICAN JOURNAL OF PHYSIOLOGY, 1992, 262 (03) :H916-H920
[8]   AUGMENTATION BY INTRACELLULAR ATP OF THE DELAYED RECTIFIER CURRENT INDEPENDENTLY OF THE GLIBENCLAMIDE-SENSITIVE K-CURRENT IN RABBIT ARTERIAL MYOCYTES [J].
EVANS, AM ;
CLAPP, LH ;
GURNEY, AM .
BRITISH JOURNAL OF PHARMACOLOGY, 1994, 111 (04) :972-974
[9]   POTASSIUM CHANNEL TYPES IN ARTERIAL CHEMORECEPTOR CELLS AND THEIR SELECTIVE MODULATION BY OXYGEN [J].
GANFORNINA, MD ;
LOPEZBARNEO, J .
JOURNAL OF GENERAL PHYSIOLOGY, 1992, 100 (03) :401-426
[10]   HYPOXIC INDUCTION OF CA-2+-DEPENDENT ACTION-POTENTIALS IN SMALL PULMONARY-ARTERIES OF THE CAT [J].
HARDER, DR ;
MADDEN, JA ;
DAWSON, C .
JOURNAL OF APPLIED PHYSIOLOGY, 1985, 59 (05) :1389-1393