The Properties of Carbachol-Activated Nonselective Cation Channels at the Single Channel Level in Guinea Pig Gastric Myocytes
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概要
- 論文の詳細を見る
We investigated the properties of carbachol (CCh)-activated nonselective cation channels (NSCCCh) at the single channel level in the gastric myocytes of guinea pigs using a magnified whole-cell mode or an outside-out mode. The channel activity (NPo) recorded in a magnified whole-cell mode increased with depolarization (from −120 to −20 mV) and had the half activation potential of −81 mV under the symmetrical 140 mM Cs+ condition. The single channel conductance depended upon the extracellular monovalent cations with the order of Cs+ (35 pS) > Na+ (25 pS) > Li+ (21 pS). The channel activities markedly diminished or disappeared when external Cs+ was replaced with Na+ or N-methyl-D-glucamate (NMDG+). With Cs+ and Na+ as external cations, the channel showed a monotonic increase in NPo with the increased mole fraction of Cs+ over Na+, and it had an intermediate conductance value in solution containing 67% Cs+ with 33% Na+. These data suggested that the extracellular monovalent cations regulate the whole-cell current of NSCCCh by modulating both the open state probability and the unitary conductance, and there is one binding site for the extracellular cations within the pore.
- 社団法人 日本薬理学会の論文
- 2001-03-01
著者
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Kim Sung
Department of Bioengineering and Technology, College of Engineering, Kangwon National University
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So Insuk
Department of Physiology, Seoul National University College of Medicine
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Rhee Jong
韓国
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Kim Ki
韓国
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Kim K
Department Of Physiology School Of Medicine Gachon University Of Medicine And Science
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Kim Y
Seoul National Univ. Seoul Kor
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Kim Young
Department Of Electronics Engineering Korea Advance Intitute Of Science & Technology
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So Insuk
Department Of Physiology Seoul National University College Of Medicine
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So Insuk
Department Of Physiology And Biophysics Seoul National University College Of Medicine
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Kim Ki
Department Of Physiology School Of Medicine Gachon University Of Medicine And Science
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Kang T
Sungkyunkwan Univ. School Of Medicine Suwon Kor
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Kang Tong
Department Of Oriental Pharmaceutical Development Nambu University
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Kim Sung
Department Of Physiology Seoul National University College Of Medicine
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Kim Young
Department Of Agricultural Chemistry The University Of Tokyo
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Kim Sung
Department Of Anatomy
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Kim Young
Department Of Physiology And Biophysics Seoul National University College Of Medicine
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Rhee Jong
Department Of Neurosurgery Seoul Paik Hospital Inje University College Of Medicine
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Kim S
Department Of Physiology Seoul National University College Of Medicine
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SIM Jae
Department of Physiology and Biophysics, Seoul National University College of Medicine
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UHM Dae
Department of Physiology, College of Medicine, Sungkyunkwan University
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Sim Jae
Department Of Physiology And Biophysics College Of Medicine Seoul National University
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Uhm Dae
Department Of Physiology Sungkyunkwan University School Of Medicine
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Kim Ki
Deparment Of Obstetrics & Gynecology College Of Medicine Pusan National University
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Kim Young
Coll. Of Pharmacy And Res. Inst. Of Pharmaceutical Sci. Seoul National Univ.
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Sim Jae
Department Of Materials Engineering Sungkyunkwan University
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Kang Tong
Department Of Oriental Medicinal Materials & Processing College Of Life Science Kyung Hee Univer
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Rhee Jong
Department Of Medicine Sungkyunkwan University School Of Medicine
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Rhee Jong
Department Of Medicine Samsung Medical Center Sungkyunkwan University School Of Medicine
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Rhee Jong
Department Of Internal Medicine Samsung Medical Center Sungkyunkwan University School Of Medicine
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Kim Sung
Department of Advanced Materials Science and Engineering, Sungkyunkwan University, Suwon, Gyeonggi 440-746, Republic of Korea
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Kim Sung
Department of Advanced Materials Engineering for Information and Electronics, Kyung Hee University, Yongin, Gyeonggi 446-701, Republic of Korea
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RHEE Jong
Department of Information and Communications Engineering, Myongji University
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