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首页> 外文期刊>Biophysical Journal >Ca2+ changes the force sensitivity of the hair-cell transduction channel
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Ca2+ changes the force sensitivity of the hair-cell transduction channel

机译:Ca2 +改变了毛细胞转导通道的力敏感性

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摘要

The mechanically gated transduction channels of vertebrate hair cells tend to close in similar to 1 ms after their activation by hair bundle deflection. This fast adaptation is correlated with a quick negative movement of the bundle (a ''twitch''), which can exert force and may mediate an active mechanical ampli. cation of sound stimuli in hearing organs. We used an optical trap to deflect bullfrog hair bundles and to measure bundle movement while controlling Ca2+ entry with a voltage clamp. The twitch elicited by repolarization of the cell varied with force applied to the bundle, going to zero where channels were all open or closed. The force dependence is quantitatively consistent with a model in which a Ca2+-bound channel requires similar to 3 pN more force to open, and rules out other models for the site of Ca2+ action. In addition, we characterized a faster, voltage-dependent ''flick'', which requires intact tip links but not current through transduction channels.
机译:脊椎动物毛细胞的机械门控转导通道在被毛束偏转激活后趋于在约1 ms内关闭。这种快速适应与束的快速负向运动(“抽搐”)相关,后者可以施加力并可以介导主动的机械放大器。听力器官中的声音刺激阳离子。我们使用了一个光阱来偏转牛蛙毛束并测量束的移动,同时用电压钳控制Ca2 +的进入。细胞重新极化引起的抽搐随施加在束上的力而变化,在通道全部打开或关闭时归零。力依赖性与其中Ca2 +结合的通道需要更多类似的3 pN力才能打开的模型在数量上是一致的,并且排除了其他模型对Ca2 +作用的位置。此外,我们的特征是速度更快,电压相关的“轻拂”,它需要完整的尖端连接,而无需通过换能通道的电流。

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