首页> 外文期刊>The Royal Society Proceedings B: Biological Sciences >ATP activates cationic and anionic conductances in Schwann cells cultured from dorsal root ganglia of the mouse.
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ATP activates cationic and anionic conductances in Schwann cells cultured from dorsal root ganglia of the mouse.

机译:ATP激活从小鼠背根神经节培养的雪旺细胞中的阳离子和阴离子电导。

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摘要

The whole-cell configuration of the patch-clamp technique was used to study membrane responses of mouse Schwann cells in organotypique culture to external application of adenosine 5'-triphosphate (ATP). ATP induced an inward current (IATP) which caused a membrane depolarization. IATP was dose dependent with a Kd of 8.4 mM. ATP analogues had the following relative agonist potency: ATP > ADP approximately alpha-beta methylene ATP. Neither AMP nor adenosine were effective. IATP was reversibly reduced by suramin, a P2 purinoceptor antagonist. Alteration of ionic gradients showed that ATP activated simultaneously cationic (potassium and calcium) and anionic (chloride) conductances. Values of the reversal potentials to ATP suggested the following permeability sequence through the anion channel: SCN- > I- > Br- approximately Cl- > aspartate > isethionate. IATP did not appear to be dependent on intracellular calcium, as inclusion or omission of calcium chelator (BAPTA, 10 mM) in the pipette solution had no effect on IATP. The observed ATP response resembles a P2-mediated response in its kinetics, its relative agonist potency and its blockade by suramin, but differs from known ones by its requirement for high concentrations of ATP and the activation of a cationic as well as an anionic conductance.
机译:膜片钳技术的全细胞配置用于研究有机型培养的小鼠雪旺细胞对外部应用5'-三磷酸腺苷(ATP)的膜反应。 ATP引起内向电流(IATP),从而引起膜去极化。 IATP具有剂量依赖性,Kd为8.4 mM。 ATP类似物具有以下相对激动剂效力:ATP> ADP大约为α-β亚甲基ATP。 AMP和腺苷均无效。苏拉明是P2嘌呤受体拮抗剂,可逆地降低IATP。离子梯度的变化表明ATP同时激活了阳离子电导率(钾和钙)和阴离子电导率(氯化物)。 ATP逆转电位的值表明,通过阴离子通道的通透性序列如下:SCN-> I-> Br-约Cl->天冬氨酸>乙硫醇。 IATP似乎不依赖于细胞内钙,因为移液溶液中钙螯合剂(BAPTA,10 mM)的包含或缺失对IATP没有影响。观察到的ATP反应在动力学,相对激动剂效力和苏拉明的阻断方面类似于P2介导的反应,但与已知的反应不同,因为它对高浓度的ATP的要求以及阳离子和阴离子电导的活化。

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