MaxiK channel roles in blood vessel relaxations induced by endothelium-derived relaxing factors and their molecular mechanisms
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概要
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The endothelium of blood vessels plays a crucial role in the regulation of blood flow by controlling mechanical functions of underlying vascular smooth muscle. The regulation by the endothelium of vascular smooth muscle relaxation and contraction is mainly achieved via the release of vasoactive substances upon stimulation with neurohumoural substances and physical stimuli. Nitric oxide (NO) and prostaglandin I_2 (prostacyclin, PGI_2) are representative endothelium-derived chemicals that exhibit powerful blood vessel relaxation. NO action involves activation of soluble guanylyl cyclase and PGI_2 action is initiated by the stimulation of a cell-surface receptor (IP receptor, IPR) that is coupled with G_s-protein-adenylyl cyclase cascade. Many studies on the mechanisms by which NO and PGI_2 elicit blood vessel relaxation have highlighted a role of the large conductance, Ca^<2+>-activated K^+ (MaxiK, BK_<Ca>) channel in smooth muscle as their common downstream effector. Furthermore, their molecular mechanisms have been unravelled to include new routes different from the conventionally approved intracellular pathways. MaxiK channel might also serve as a target for endotheliumderived hyperpolarizing factor (EDHF), the non-NO, non-PGI_2 endothelium-derived relaxing factor in some blood vessels. In this brief article, we review how MaxiK channel serves as an endothelium-vascular smooth muscle transducer to communicate the chemical signals generated in the endothelium to control blood vessel mechanical functions and discuss their molecular mechanisms.
- 日本平滑筋学会の論文
著者
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KOIKE Katsuo
Department of Chemical Pharmacology, Toho University School of Pharmaceutical Sciences
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Koike Katsuo
東京薬科大学 内分泌分子薬理学
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Koike K
Toho Univ. School Of Pharmaceutical Sci. Chiba Jpn
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Koike Katsuo
Department Of Chemical Pharmacology Toho University Faculty Of Pharmaceutical Sciences
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Tanaka Yoshio
Department of Pharmacology, Faculty of Pharmaceutical Sciences, Toho University
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KOIKE Katsuo
Toho University School of Pharmaceutical Sciences
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Koike K
Toho Univ. Chiba Jpn
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Tanaka Yoshio
Dep. Of Chemical Pharmacology Fac. Of Pharmaceutical Sciences Toho Univ.
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Toro Ligia
Department Of Anesthesiology Division Of Molecular Medicine David Geffen School Of Medicine Universi
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Tanaka Yoshio
Department Of Chemical Pharmacology Toho University Faculty Of Pharmaceutical Sciences
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Tanaka Yoshio
Department Of Applied Chemistry Faculty Of Engineering Yokohama National University
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