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Closed-channel block of BK potassium channels by bbTBA requires partial activation

机译:bbTBA封闭BK钾通道的通道需要部分激活

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摘要

Blockade of large-conductance Ca2+-activated K+ (BK) channels by the bulky quaternary ammonium compound, N-(4-[benzoyl]benzyl)-N,N,N-tributylammonium (bbTBA), exhibits features consistent with blockade of both closed and open states. Here, we examine block of closed BK channels by bbTBA and how it may differ from block of open channels. Although our observations generally confirm earlier results, we describe three observations that are inconsistent with a model in which closed and open channels are equally accessible to blockade by bbTBA. First, block by bbTBA exhibits Ca2+-dependent features that are inconsistent with strictly state-independent block. Second, the steady-state voltage dependence of bbTBA block at negative potentials shows that any block of completely closed states either does not occur or is completely voltage independent. Third, determination of the fractional unblock by bbTBA at either low or high Ca2+ reveals deviations from a model in which open- and closed-state block is identical. The results support the view that bbTBA blockade of fully closed channels does not occur. We imagine two general types of explanation. First, a stronger voltage dependence of closed-channel block may minimize the contribution of closed-channel block at negative potentials. Second, voltage-dependent conformational changes among closed-channel states may permit block by bbTBA. The analysis supports the latter view, suggesting that bbTBA blockade of fully closed channels does not occur, but the ability of bbTBA to block a closed channel requires movement of one or more voltage sensors. Models in which block is coupled to voltage sensor movement can qualitatively account for (1) the ability of open-channel block to better fit block of conductance–voltage curves at high Ca2+; (2) the voltage dependence of fractional availability; and (3) the fractional unblock at different open probabilities. BK channels appear to undergo voltage-dependent conformational changes among closed states that are permissive for bbTBA block.
机译:庞大的季铵化合物N-(4- [苯甲酰基]苄基)-N阻断大电导Ca 2 + -活化的K + (BK)通道, N,N-三丁基铵(bbTBA)具有与封闭和打开状态均受阻的特征。在这里,我们通过bbTBA检查封闭的BK通道块,以及它与开放通道的块有何不同。尽管我们的观察结果大体上证实了较早的结果,但我们描述了三个与bbTBA可以同时访问封闭通道和开放通道的模型不一致的观察结果。首先,按bbTBA阻止显示出Ca 2 + 依赖的特征,这与严格的状态无关的阻止不一致。其次,bbTBA块在负电势下的稳态电压依赖性表明,任何完全闭合状态的块要么不会发生,要么完全不依赖电压。第三,在低或高Ca 2 + 情况下,通过bbTBA进行的部分无阻滞的测定揭示了与开放状态和闭合状态相同的模型的偏差。结果支持以下观点:不会发生完全封闭通道的bbTBA封锁。我们想象两种一般的解释类型。首先,闭通道模块对电压的依赖性更强,可以最小化负电压下闭通道模块的贡献。第二,闭路状态之间电压相关的构象变化可能会导致bbTBA阻止。分析支持后一种观点,表明没有发生完全封闭通道的bbTBA封锁,但是bbTBA阻塞封闭通道的能力要求移动一个或多个电压传感器。模块与电压传感器运动耦合的模型可以定性地解释(1)在高Ca 2 + 时,明渠模块更好地拟合电导-电压曲线模块的能力; (2)分数可用性的电压依赖性; (3)在不同开放概率下的分数解阻塞。 BK通道似乎在bbTBA块允许的闭合状态之间经历电压依赖性构象变化。

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