首页> 美国卫生研究院文献>The Journal of Physiology >Calcium dependence of voltage sensitivity in adenosine 35-cyclic phosphate-stimulated sodium current in Pleurobranchaea.
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Calcium dependence of voltage sensitivity in adenosine 35-cyclic phosphate-stimulated sodium current in Pleurobranchaea.

机译:钙依赖电压在胸腔ran虫腺苷35-环磷酸酯刺激的钠电流中的依赖性。

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摘要

1. Ionophoretic injection of cyclic AMP into a voltage-clamped molluscan neurone caused a transient slow inward current (Isi) whose amplitude was enhanced by depolarization. Na+-replaced salines abolished the current, placing it with cyclic AMP-stimulated Na+ currents of other gastropod species. 2. Isi amplitude was suppressed by extracellular Ca2+. The amplitude increased up to 4-fold at holding potentials of -50 mV in nominally Ca2+-free saline. Ion substitutions showed that Ca2+ suppressed Isi more effectively than Mg2+, Co2+, Cd2+, Mn2+, Ba2+ or Sr2+. 3. Voltage sensitivity of Isi was abolished by low-Ca2+ salines, by the Ca2+ current blocker Co2+ and by substitution of Ba2+ or Sr2+ as Ca2+ channel current carriers. In such salines Isi showed no appreciable change in amplitude at holding potentials between -70 and -25 mV. 4. Intracellular injection of the Ca2+ chelator EGTA both augmented the amplitude of the current and its duration. EGTA injection failed to suppress the Ca2+-dependent voltage sensitivity of Isi. Intracellular injection of concentrated 3-N-(morpholino) propanesulphonic acid (MOPS) pH buffer to inhibit secondary, Ca2+-dependent intracellular acidification also failed to suppress the voltage sensitivity, as did injections of a mixed EGTA and MOPS solution. 5. While the data indicate a requirement for extracellular Ca2+ in conferring voltage sensitivity, they do not support a role for an intracellular action. An extracellular binding site for Ca2+ could mediate the voltage sensitivity, either by local depolarization-dependent changes in extracellular Ca2+ concentration or through direct voltage-sensitive block of the Isi channel.
机译:1.离子电注入环状AMP到电压钳制的软体动物神经元中,会引起瞬态缓慢的内向电流(Isi),其振幅会因去极化而增强。用Na +代替的盐水消除了该电流,将其与其他腹足类动物的AMP循环刺激的Na +电流放置在一起。 2. Isi振幅被细胞外Ca2 +抑制。在不含Ca2 +的生理盐水中,在保持电位为-50 mV时,振幅增加至4倍。离子取代显示,Ca2 +比Mg2 +,Co2 +,Cd2 +,Mn2 +,Ba2 +或Sr2 +更有效地抑制Isi。 3.低Ca2 +盐溶液,Ca2 +电流阻滞剂Co2 +以及通过将Ba2 +或Sr2 +替换为Ca2 +通道电流载体,消除了Isi的电压敏感性。在这种盐水中,Isi在-70至-25 mV的保持电位下,振幅没有明显变化。 4.细胞内注射Ca2 +螯合剂EGTA都增加了电流幅度和持续时间。 EGTA注射未能抑制Isi的Ca2 +依赖性电压敏感性。胞内注射浓缩的3-N-(吗啉代)丙烷磺酸(MOPS)pH缓冲液以抑制依赖于Ca2 +的继发性细胞内酸化也无法抑制电压敏感性,就像注射混合的EGTA和MOPS溶液一样。 5.虽然数据表明在赋予电压敏感性时需要细胞外Ca2 +,但它们不支持细胞内作用。 Ca2 +的细胞外结合位点可以通过局部去极化依赖性的细胞外Ca2 +浓度变化或通过Isi通道的直接电压敏感区来介导电压敏感性。

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