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Mapping the distribution of the outer hair cell motility voltage sensor by electrical amputation.

机译:通过电截肢术绘制外毛细胞运动电压传​​感器的分布图。

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摘要

The outer hair cell (OHC) possesses a nonlinear charge movement whose characteristics indicate that it represents the voltage sensor responsible for OHC mechanical activity. OHC mechanical activity is known to exist along a restricted extent of the cell's length. We have used a simultaneous partitioning microchamber and whole cell voltage clamp technique to electrically isolate sections of the OHC membrane and find that the nonlinear charge movement is also restricted along the cell's length. Apical and basal portions of the OHC are devoid of voltage sensors, corresponding to regions of the cell where the subsurface cisternae and/or the mechanical responses are absent. We conclude that the physical domain of the motility voltage sensor corresponds to that of the mechanical effector and speculate that sensor and effector reside within one intra membranous molecular species, perhaps an evolved nonconducting or poorly conducting voltage-dependent ion channel.
机译:外毛细胞(OHC)具有非线性电荷运动,其特性表明它代表负责OHC机械活动的电压传感器。已知OHC机械活性沿细胞长度的有限范围存在。我们使用了同时分配的微腔室和全电池电压钳技术来电隔离OHC膜的各个部分,发现非线性电荷运动也沿电池的长度受到限制。 OHC的顶端和基础部分没有电压传感器,对应于缺少地下水池和/或机械响应的细胞区域。我们得出结论,动力电压传感器的物理域与机械效应器的物理域相对应,并推测传感器和效应器驻留在一个膜内分子物种内,可能是进化的不导电或导电性差的电压依赖性离子通道。

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