NEUROPEPTIDE MODULATION OF SINGLE CALCIUM AND POTASSIUM CHANNELS DETECTED WITH A NEW PATCH CLAMP CONFIGURATION

被引:80
作者
LEVITAN, ES
KRAMER, RH
机构
[1] YALE UNIV,SCH MED,DEPT PHARMACOL,NEW HAVEN,CT 06510
[2] COLUMBIA UNIV COLL PHYS & SURG,HOWARD HUGHES MED INST,NEW YORK,NY 10032
[3] COLUMBIA UNIV COLL PHYS & SURG,CTR NEUROBIOL & BEHAV,NEW YORK,NY 10032
关键词
D O I
10.1038/348545a0
中图分类号
O [数理科学和化学]; P [天文学、地球科学]; Q [生物科学]; N [自然科学总论];
学科分类号
07 ; 0710 ; 09 ;
摘要
CALCIUM channel activity is crucial for secretion and synaptic transmission, but it has been difficult to study Ca2+ channel modulation because survival and regulation of some of these channels require cytoplasmic constituents that are lost with the formation of cell-free patches. Here we report a new patch clamp configuration in which activity and regulation of channels are maintained after removal from cells. A pipette containing the pore-forming agent nystatin is sealed onto a cell and withdrawn to form an enclosed vesicle. The resulting perforated vesicle, formed from pituitary tumour cells, contains Ca2+ and K+ channels. Ca2+-activated K+ channels in the vesicle are activated by cyclic AMP analogues, and by a neuropeptide (thyrotropin-releasing hormone) that stimulates phosphatidylinositol turnover and inositol trisphosphate-gated Ca2+ release from intracellular organelles. Thus, the perforated vesicle retains signal transduction systems necessary for ion channel modulation. Functional dihy-dropyridine-sensitive Ca2+ channels (L-type) are maintained in the vesicle, and their gating is inhibited by thyrotropin-releasing hormone. Hence, this new patch clamp configuration has allowed a direct detection of the single-channel basis of transmitter-induced inhibition of L-type Ca2+ channels. The modulation of Ca2+-channel gating may be an important mechanism for regulating hormone secretion from pituitary cells. © 1990 Nature Publishing Group.
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页码:545 / 547
页数:3
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