Kennedy Helen J, Evans Michael G, Crawford Andrew C, Fettiplace Robert
Department of Physiology, University of Wisconsin Medical School, Madison, Wisconsin 53706, USA.
J Neurosci. 2006 Mar 8;26(10):2757-66. doi: 10.1523/JNEUROSCI.3808-05.2006.
There is current debate about the origin of mechanical amplification whereby outer hair cells generate force to augment the sensitivity and frequency selectivity of the mammalian cochlea. To distinguish contributions to force production from the mechanotransducer (MET) channels and somatic motility, we have measured hair bundle motion during depolarization of individual outer hair cells in isolated rat cochleas. Depolarization evoked rapid positive bundle deflections that were reduced by perfusion with the MET channel blocker dihydrostreptomycin, with no effect on the nonlinear capacitance that is a manifestation of prestin-driven somatic motility. However, the movements were also diminished by Na salicylate and depended on the intracellular anion, properties implying involvement of the prestin motor. Furthermore, depolarization of one outer hair cell caused motion of neighboring hair bundles, indicating overall motion of the reticular lamina. Depolarization of solitary outer hair cells caused cell-length changes whose voltage-activation range depended on the intracellular anion but were insensitive to dihydrostreptomycin. These results imply that both the MET channels and the somatic motor participate in hair bundle motion evoked by depolarization. It is conceivable that the two processes can interact, a signal from the MET channels being capable of modulating the activity of the prestin motor.
目前关于机械放大的起源存在争论,即外毛细胞产生力以增强哺乳动物耳蜗的敏感性和频率选择性。为了区分机械转导(MET)通道和体细胞运动对力产生的贡献,我们测量了分离的大鼠耳蜗中单个外毛细胞去极化期间的毛束运动。去极化诱发快速的正向毛束偏转,用MET通道阻滞剂二氢链霉素灌注可使其减小,而对作为prestin驱动的体细胞运动表现形式的非线性电容没有影响。然而,这些运动也被水杨酸钠减弱,并且依赖于细胞内阴离子,这些特性意味着prestin马达参与其中。此外,一个外毛细胞的去极化引起相邻毛束的运动,表明网状板的整体运动。孤立外毛细胞的去极化引起细胞长度变化,其电压激活范围依赖于细胞内阴离子,但对二氢链霉素不敏感。这些结果表明,MET通道和体细胞马达都参与了去极化诱发的毛束运动。可以想象,这两个过程可能相互作用,来自MET通道的信号能够调节prestin马达的活性。