THE EFFECTS OF NITRIC-OXIDE ON THE MEMBRANE-POTENTIAL AND IONIC CURRENTS OF MOUSE PANCREATIC B-CELLS

被引:30
作者
KRIPPEITDREWS, P
KRONCKE, KD
WELKER, S
ZEMPEL, G
ROENFELDT, M
AMMON, HPT
LANG, F
DREWS, G
机构
[1] UNIV TUBINGEN, INST PHARM, DEPT PHARMACOL, D-72076 TUBINGEN, GERMANY
[2] UNIV TUBINGEN, DEPT PHYSIOL, D-72076 TUBINGEN, GERMANY
[3] UNIV DUSSELDORF, BIOMED RES CTR, RES GRP IMMUNOBIOL, D-40001 DUSSELDORF, GERMANY
关键词
D O I
10.1210/en.136.12.5363
中图分类号
R5 [内科学];
学科分类号
1002 ; 100201 ;
摘要
Nitric oxide (NO) is considered to contribute to the impairment of B cell function in insulin-dependent diabetes mellitus. The effects of compounds that release NO were tested on the membrane potential and ionic currents of mouse pancreatic B cells using intracellular microelectrodes and the whole-cell patch-clamp technique. S-Nitroso-cysteine led to a concentration-dependent reduction of electrical activity induced by 15 nM glucose. At a concentration of 1 mM, S-nitroso-cysteine caused a hyperpolarization of the plasma membrane with complete suppression of electrical activity. In about half of the cells tested, electrical activity reappeared during treatment with S-nitroso-cysteine or after wash-out. However, in the other cells the hyperpolarization was followed by a slow depolarization and electrical activity did not reappear. The perforated-patch whole-cell K-ATP(+) current first increased and subsequently decreased again during exposure to 1 mM S-nitroso-cysteine. With 0.1 and 0.01 mM S-nitroso-cysteine, only the rise of the current amplitude was observed. S-nitroso-cysteine (1 mM) almost completely abolished the current through voltage-dependent Ca2+ channels (measured with Ba2+ as charge carrier). Like S-nitroso-cysteine, 100 mu M sodium-nitroprusside, another donor, evoked a marked hyperpolarization of the membrane potential that was at least in part reversible. To further ascertain that the effect of S-nitroso-cysteine was mediated by NO, we tested the decomposition products of S-nitroso-cysteine. Nitrite and denitrosylated S-nitroso-cysteine (1 mM) did not alter electrical activity of B cells, whereas cysteine (1 mM) caused a slight depolarization. It is concluded that exogenous NO evokes rapid changes of B cell function by influencing the activity of ion channels.
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页码:5363 / 5369
页数:7
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