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Synergistic actions of diacylglycerol and inositol 1,4,5 trisphosphate for Ca^2+-dependent inactivation of TRPC7 channel
作者姓名:Zhang H  Inoue R  Shi J  Jin XH  Li YQ
作者单位:[1]Department of Anatomy and KK Leung Brain Research Centre, The Fourth Military Medical University, Xi'an 710032, China; [2]Department of Physiology, Fukuoka University School of Medicine, Fukuoka 814-0180, Japan; [3]Department of Histology and Embryology, The Fourth Military Medical University, Xi'an 710032, China; [4]Department of Cardiology, Xijing Hospital, Xi'an 710032, China
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关 键 词:钙离子  活性  甘油二酯  纤维醇1  4  5三磷酸盐

Synergistic actions of diacylglycerol and inositol 1,4,5 trisphosphate for Ca2+-dependent inactivation of TRPC7 channel
Zhang H,Inoue R,Shi J,Jin XH,Li YQ.Synergistic actions of diacylglycerol and inositol 1,4,5 trisphosphate for Ca2+-dependent inactivation of TRPC7 channel[J].Acta Pharmacologica Sinica,2008,29(1):90-97.
Authors:Zhang Hua  Inoue Ryuji  Shi Juan  Jin Xiao-hang  Li Yun-qing
Institution:Department of Anatomy and KK Leung Brain Research Centre, The Fourth Military Medical University, Xi'an, China.
Abstract:AIM: The aim of the present study was to explore the mechanism for the Ca2+- dependent inactivation of the canonical transient receptor potential (TRPC) 7 channel expressed in human embryonic kidney 293 cells. METHOD: The whole-cell patch-clamp technique was used in the study. RESULTS: With Ca2+-free external solution, the perfusion of 100 micromol/L carbachol to, or dialysis of the cell with 100 micromol/L guanosine 5'-3-O-(thio)triphosphate (GTPgammaS), induced large inward currents, respectively. These currents were rapidly inhibited by the addition of 1 mmol/L Ca2+ into the bath, and recovery from this inhibition was only partial after the Ca2+ removal, unless vigorous intracellular Ca2+ buffering with 10 mmol/L 1,2 bis(2- aminophenoxy)ethane-N,N,No,No-tetraacetic acid (BAPTA) (plus 4 mmol/L Ca2+) was employed. In contrast, the current induced by a membrane-permeable analog of diacylglycerol (DAG), 1-oleoyl-2-acetyl-sn-glycerol (OAG; 100 micromol/L) did not undergo the inhibition persisting after Ca2+ removal. Interestingly, the inclusion of inositol 1,4,5 trisphosphate (IP3; 100 micromol/L) in the patch pipette rendered the OAG-induced current susceptible to the persistent Ca2+-mediated inhibition independent of the IP3 receptor in the majority of the tested cells, as evidenced by the inability of heparin and thapsigargin in reversing the effect of IP3. CONCLUSION: The present results suggest that Ca2+ entry via the activated TRPC7 channel plays a critical role in inactivating the channel where the cooperative actions of DAG and IP3 are essentially involved.
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