首页> 美国卫生研究院文献>The Journal of Physiology >ADP-induced rapid inward currents through Ca(2+)-permeable cation channels in mouse rat and guinea-pig megakaryocytes: a patch-clamp study.
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ADP-induced rapid inward currents through Ca(2+)-permeable cation channels in mouse rat and guinea-pig megakaryocytes: a patch-clamp study.

机译:ADP诱导快速内向电流通过Ca(2+)可渗透的阳离子通道在小鼠大鼠和豚鼠的巨核细胞:膜片钳研究。

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摘要

1. The rapid inward currents in mouse megakaryocytes evoked by adenosine diphosphate (ADP), a ubiquitous platelet-activating substance, were studied. Time and current resolution were improved by using patch-clamp recording and an extracellular fast perfusion ("Y tube') technique. 2. Application of ADP (40 microM) to megakaryocytes immersed in physiological saline evoked rapid inward currents (80-340 pA at -42 mV). The cellular responses to a second ADP application were markedly reduced, but in the absence of external Ca2+, responses to repeated ADP application were maintained and did not deteriorate. 3. The ADP-induced current recorded in Ca(2+)-free external media showed short latency (less than 20 ms) and approximately exponential decay (time constant, 300-500 ms), which was independent of the holding potential and seemed to be caused mainly by receptor desensitization; it took over 5.5 min for complete recovery. 4. The ADP concentration response relationship of the megakaryocytes revealed that the half-maximal concentration and the Hill coefficient were 12.6 microM and 1.4, respectively. 5. An ion replacement experiment showed that the ADP-induced currents could be carried by Na+, Cs+ and K+, but not Cl-, and the cation channels were permeable to Ca2+, Ba2+ and Mg2+. 6. Neither Ca2+ chelators (10 mM EGTA and 10 mM BAPTA) nor hydrolysis-resistant guanine nucleotides (2 mM GDP-beta-S and 0.4 mM 5'-guanylylimidodiphosphate) in the internal saline affected the rapid responses to ADP, and ADP-induced currents were recorded in excised membrane patches, suggesting that the ADP receptor site and the molecular structure forming the cation channel are tightly coupled and/or parts of the same molecule. 7. In rat and guinea-pig megakaryocytes, ADP-induced rapid inward currents showed the same properties as in mouse megakaryocytes.
机译:1.研究了普遍存在的血小板活化物质二磷酸腺苷(ADP)诱发的小鼠巨核细胞的快速内向电流。通过使用膜片钳记录和细胞外快速灌注(“ Y管”)技术,改善了时间和电流分辨率; 2.将ADP(40 microM)应用于浸入生理盐水中的巨核细胞诱发了快速内向电流(80-340 pA -42 mV)。细胞对第二次ADP施用的反应明显降低,但在没有外部Ca2 +的情况下,对重复ADP施用的反应得以维持并且不会恶化3. Ca(2+ )的外部媒体表现出短的等待时间(少于20毫秒)和大约指数衰减(时间常数300-500毫秒),这与保持电位无关,并且似乎主要是由受体脱敏引起的;耗时5.5分钟4.巨核细胞的ADP浓度响应关系表明,半数最大浓度和Hill系数分别为12.6 microM和1.4。5.离子置换实验表明在ADP诱导的电流下,Na +,Cs +和K +可以携带,但Cl-不能携带,并且阳离子通道可渗透Ca2 +,Ba2 +和Mg2 +。 6.内部盐水中的Ca2 +螯合剂(10 mM EGTA和10 mM BAPTA)或耐水解的鸟嘌呤核苷酸(2 mMGDP-β-S和0.4 mM 5'-鸟苷酰二磷酸)均不影响对ADP的快速反应,而ADP-感应电流记录在切除的膜片中,表明ADP受体位点和形成阳离子通道的分子结构紧密耦合和/或同一分子的一部分。 7.在大鼠和豚鼠巨核细胞中,ADP诱导的快速内向电流表现出与小鼠巨核细胞相同的特性。

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