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首页> 外文期刊>American Journal of Physiology >A highly expressing Tet-inducible cell line recapitulates in situ developmental changes in prestin's Boltzmann characteristics and reveals early maturational events.
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A highly expressing Tet-inducible cell line recapitulates in situ developmental changes in prestin's Boltzmann characteristics and reveals early maturational events.

机译:高度表达Tet的可诱导细胞系概括了Prestin的Boltzmann特征的原位发育变化,并揭示了早期的成熟事件。

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摘要

Prestin is the motor protein within the lateral membrane of outer hair cells (OHCs), and it is required for mammalian cochlear amplification. Expression of prestin precedes the onset of hearing in mice, and it has been suggested that prestin undergoes a functional maturation within the membrane coincident with the onset of hearing. We have developed a tetracycline-inducible prestin-expressing cell line that we have used to model prestin's functional maturation. We used prestin's voltage-dependent nonlinear charge movement (or nonlinear capacitance) as a test of function and correlated it to biochemical measures of prestin expressed on the cell surface. An initial stage of slow growth in charge density is accompanied by a rapid increase in our estimate of charge carried by an individual motor. A rapid growth in charge density follows and strongly correlates with an increasing ratio between an apparently larger and smaller monomer, suggesting that the latter exerts a dominant-negative effect on function. Finally, there is a gradual depolarizing shift in the voltage of peak capacitance, similar to that observed in developing OHCs. This inducible system offers many opportunities for detailed studies of prestin.
机译:Prestin是外毛细胞(OHC)的侧膜内的运动蛋白,是哺乳动物耳蜗放大所必需的。 prestin的表达在小鼠的听力发作之前,并且已经表明,prestin在与听力发作同时发生的膜内功能性成熟。我们已经开发了四环素诱导的表达prestin的细胞系,我们已经用来模拟prestin的功能成熟。我们使用了Prestin依赖电压的非线性电荷移动(或非线性电容)作为功能测试,并将其与在细胞表面表达的Prestin的生化指标相关联。电荷密度缓慢增长的初始阶段伴随着我们对单个电动机所带电荷的估计的快速增加。随之而来的是电荷密度的快速增长,并且与明显更大和更小的单体之间的比率增加密切相关,这表明后者对功能起着显性负作用。最后,与正在开发的OHC中所观察到的相似,峰值电容的电压也逐渐消失。这种可诱导的系统为深入研究普雷斯汀提供了许多机会。

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