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首页> 外文期刊>Neuroscience Letters: An International Multidisciplinary Journal Devoted to the Rapid Publication of Basic Research in the Brain Sciences >Temperature dependence of non-linear capacitance in human embryonic kidney cells transfected with prestin, the outer hair cell motor protein.
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Temperature dependence of non-linear capacitance in human embryonic kidney cells transfected with prestin, the outer hair cell motor protein.

机译:体外毛细胞运动蛋白prestin转染的人类胚胎肾细胞中非线性电容的温度依赖性。

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摘要

The transmembrane motor protein prestin is thought to underlie outer hair cell (OHC) motility. Prestin expressed in non-auditory cells confers OHC-like electrical characteristics to the cell membrane, including the generation of gating-like currents (or non-linear capacitance), whose voltage dependence is susceptible to membrane tension and initial voltage conditions. Here we report that prestin's voltage sensitivity is, like that of the native motor, markedly temperature dependent. Prestin-transfected HEK cells were whole-cell voltage clamped while temperature was varied from 10-35 degrees C. V(pkcm), the voltage at peak capacitance, reversibly and linearly shifted to depolarized levels with increasing temperatures, while peak capacitance also increased, but with significant hysteresis upon recooling. Mathematical modeling suggests that this increase may be due to a charged voltage sensor having a wider range of movement through or larger unit charge within the plasma membrane at higher temperatures.
机译:跨膜运动蛋白蛋白原被认为是外毛细胞(OHC)运动的基础。在非听觉细胞中表达的Prestin赋予细胞膜类似OHC的电特性,包括门控电流(或非线性电容)的产生,其电压依赖性容易受到膜张力和初始电压条件的影响。在这里,我们报告说,与天然马达一样,普雷斯汀的电压敏感性与温度明显相关。将Prestin转染的HEK细胞进行全细胞电压钳制,同时温度在10-35摄氏度之间变化。V(pkcm),随着温度的升高,峰值电容处的电压可逆且线性地移至去极化水平,而峰值电容也有所增加,但在重新冷却时有明显的滞后现象。数学模型表明,这种增加可能是由于充电的电压传感器在较高的温度下具有更宽的运动范围或质膜内的较大单位电荷。

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