期刊论文详细信息
The Japanese Journal of Pharmacology
Expression of Two Different Cholecystokinin Receptors in Xenopus Oocytes Injected with mRNA from Rabbit Pancreas and Rat Hippocampus
Shunji Shinohara1  Shunji Murata1  Kazuo Kawasaki1  Masafumi Fujimoto2  Yasushi Shigeri3 
[1]Discovery Research Laboratories II. Shionogi and Co., Ltd.
[2]Shionogi Research Laboratories, Shionogi and Co., Ltd.
[3]Present address: Department of Organic Materials, Osaka National Research Institute, Agency of Industrial Science and Technology, Ministry of International Trade and Industry
关键词: Cholecystokinin (CCK);    Xenopus oocyte;    Electrophysiology;    CCKA-receptor;    CCKB-receptor;   
DOI  :  10.1254/jjp.72.9
学科分类:药理学
来源: Nihon Yakuri Gakkai Henshuubu / Japanese Pharmacological Society
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【 摘 要 】
References(28)Cited-By(3)Electrophysiological responses to cholecystokinin (CCK) were studied in Xenopus oocyies injected with mRNA from rabbit pancreas or rat hippocampus. CCK-octapeptide(26-33) (sulfated form) (CCK-8) elicited inward currents in both groups. In oocyies injected with pancreatic mRNA, CCK-8-induced currents were composed of two components, fast and slow. However, in oocytes injected with hippocampal mRNA, fast currents disappeared. The potency ranking of the agonists and the antagonist indicated that the receptors expressed by pancreatic and hippocampal mRNA were CCKA-and CCKB-subtypes, respectively. Extracellular application of EGTA had little effect on the CCKB-mediated response, but attenuated the CCKA-mediated one. Intracellular injection of EGTA abolished the CCKB-mediated response, whereas small smooth currents remained in oocyies expressing the CCKA-receptor. The reversal potentials of the CCKA-and CCKB-receptor-mediated responses were consistent with that for Cl- currents. However, the reversal potential of the small smooth currents in EGTA-loaded oocytes expressing the CCKA-receptors was close to that for a non-selective cation channel. These results suggest that CCK-8 activates at least two different channels, a Ca2+-dependent Cl- channel and a non-selective cation channel in oocytes expressing the CCKA-receptor, while the CCKB-receptor elicits only a Ca2+-dependent Cl- channel.
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