日本生理学会大会発表要旨集
セッションID: 1P236
会議情報
S125 Ionic channels & receptors
Endosulfine / ARPP による K-ATP channels および membrane electrical activityの調節機構
中田 正範加計 正文稲垣 暢也矢田 俊彦
著者情報
キーワード: endosulfine, ARPP, K-ATP Channel
会議録・要旨集 フリー

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抄録
The K-ATP channel plays a mojor role in coupling the metabolic state to the electrical activity of plasma membranes in several cells. Endosulfine was identified as the endogenious regulator of K-ATP channels. Endosulfine belongs to a highly conserved family of aAMP-regulated phosphoprotein (ARPP) that includes ARPP-16, ARPP-19, ARPP-21 and DARPP-32. The biological function of endosulfine/ARPP has not been understood. In this study, we examined the mechanisms of effects of endosulfine/ARPP on K-ATP channels. Inside-out patchclamp analysis showed that exogenously addministered endosulfine inhibited the current of K-ATP channels of pancreatic beta-cells, while ARPP had no effect. The cell-attached patchclamp analysis showed that the beta-cell transfected with adenovirus expressing endosulfine exhibited action potentials at low glucose states. This result indicates that not only ARPP but also endosulfine reacts with the K-ATP channel as an intracellular ligand to inhibit its channel activity. However, endogenous endosulfine is expressed in pancreatic delta-cells but not beta-cells. Since the threshold glucose concentration for activation of delta-cells is lower than that of beta-cells, the higher sensitivity for glucose in delta-cells may be in part due to the expression of and regulation by endosulfine. [Jpn J Physiol 54 Suppl:S129 (2004)]
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© 2004 日本生理学会
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