G-Protein-Dependent and -Independent Pathways in Denatonium Signal Transduction
スポンサーリンク
概要
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To clarify the involvement of G protein in denatonium signal transduction, we carried out a whole-cell patch-clamp analysis with isolated taste cells in mice. Two different responses were observed by applying GDP-β-S, a G-protein inhibitor. One response to denatonium was reduced by GDP-β-S (G-protein-dependent), whereas the other was not affected (G-protein-independent). These different patterns were also observed by concurrently inhibiting the phospholipase C β2 and phosphodiesterase pathways via G protein. These data suggest dual, G-protein-dependent and -independent mechanisms for denatonium. Moreover, the denatonium responses were not attenuated by singly inhibiting the phospholipase C β2 or phosphodiesterase pathway, implying that both pathways were involved in G-protein-dependent transduction. In the G-protein-independent cells, the response was abolished by the depletion of calcium ions within the intracellular store. These results suggest that Ca2+ release from the intracellular store is an important factor. Our data demonstrate multiple transduction pathways for denatonium in mammalian taste cells.
- 社団法人 日本農芸化学会の論文
著者
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Mori Tomohiko
京都大学 農学研究科
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Hayashi Yukako
Graduate School Of Agriculture Kyoto University
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SAWANO Shoko
Graduate School of Agriculture, Kyoto University
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SETO Eri
Graduate School of Agriculture, Kyoto University
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MORI Tomohiko
Course of Health and Nutrition, Kio University
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Hayashi Yukako
Graduate School Of Agriculture Kyoto Univ.
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