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Block of the cyclic GMP-gated channel of vertebrate rod and cone photoreceptors by l-cis-diltiazem

机译:l-顺式-地尔硫卓对脊椎动物杆状和锥状感光体循环GMP门控通道的阻断

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摘要

Inside-out patches were excised from catfish rod or cone outer segments. Single channel and macroscopic currents were recorded from GMP-gated channels activated by 1 mM cGMP in low divalent buffered saline. Currents were blocked by the application of micromolar concentrations of l-cis-diltiazem to the cytoplasmic side of the patch. The concentration dependence of block indicated that a single molecule was sufficient to block a channel and that all channels were susceptible to block. The dissociation constant for the rod channel was an order of magnitude smaller than for the cone channel, but the voltage dependence of block was nearly identical. The macroscopic current-voltage relation in the presence of blocker was inwardly rectifying and superficially resembled voltage-dependent block by an impermeant blocker occluding the ion-conducting pore of the channel. Block by diltiazem acting from the extracellular side of the channel was investigated by including 5 microM diltiazem in the recording pipette solution. The macroscopic current-voltage relation again showed inward rectification, inconsistent with the idea that diltiazem acts by occluding the pore at the external side. The kinetics of block by diltiazem applied to the intra- and extracellular side were measured in cone patches containing only a single channel. The unbinding rates were similar in both cases, suggesting a single binding site. Differences in the binding rate were consistent with greater accessibility to the binding site from the cytoplasmic side. Block from the cytoplasmic side was independent of pH, suggesting that the state of ionization of diltiazem was not related to its ability to block the channel in a voltage-dependent fashion. These observations are inconsistent with a pore-occluding blocker, but could be explained if the hydrophobic portion of diltiazem partitioned into the hydrophobic core of the channel protein, perhaps altering the gating of the channel.
机译:从cat鱼杆或圆锥外部切出内向外的斑块。在低二价缓冲盐溶液中,记录了由1 mM cGMP激活的GMP门控通道的单通道和宏观电流。通过将微摩尔浓度的l-顺式-地尔硫卓施加于贴剂的细胞质侧,可阻止电流。阻断剂的浓度依赖性表明单个分子足以阻断通道,并且所有通道均易于阻断。棒状通道的解离常数比圆锥形通道小的解离常数,但嵌段的电压依赖性几乎相同。阻滞剂存在下的宏观电流-电压关系向内整流,并通过堵塞通道的离子传导孔的不渗透阻滞剂从表面上类似于电压依赖性阻滞剂。通过在记录移液管溶液中加入5 microM地尔硫卓,研究了从地道的细胞外作用的地尔硫卓的阻滞作用。宏观电流-电压关系再次显示出向内整流,这与地尔硫卓通过堵塞外部孔而起作用的观点不一致。在仅包含一个通道的圆锥形补片中测量了地尔硫卓阻断作用于细胞内和细胞外的动力学。在两种情况下,未结合率相似,表明存在单个结合位点。结合速率的差异与从细胞质侧到结合位点的更大可及性相一致。从细胞质一侧的阻断与pH无关,表明地尔硫卓的电离状态与其以电压依赖性方式阻断通道的能力无关。这些观察结果与阻塞孔的阻滞剂不一致,但是如果地尔硫卓的疏水部分分配到通道蛋白的疏水核中,可能改变通道的门控,则可以解释。

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