Zenner H P
Department of Otolaryngology, University of Würzburg, W. Germany.
Acta Otolaryngol. 1988 Jan-Feb;105(1-2):39-44. doi: 10.3109/00016488809119443.
The cochlea of the inner ear is no longer regarded exclusively as a passive mechanical signal analyser. Active mechanical processes are thought to influence the vibration pattern of the basilar membrane. The source of these active mechanical processes is sought in the outer hair cells (OHC). These auditory sensory cells contain actin and actin-associated structural elements. Recently, isolated OHC have been demonstrated to be capable of reversible longitudinal contractions in vitro, whose molecular mechanism could not be documented, however. Furthermore, following an increase in the intracellular Ca2+ level, isolated OHC showed longitudinal motile responses in the presence of ATP. We now report that the observed Ca2+/ATP induced mechanical events in OHC are active processes, that are driven by the hydrolytic energy of ATP. Moreover, motile responses are frequently associated with a movement of the cuticular plate, including the stereociliary bundle. Cytochalasin B, inorganic bisphosphate, trifluoperazine and antiactin inhibit the motile response. Thus, our results show that outer hair cells possess actin-dependent Ca2+ and calmodulin-controlled motor properties, so that potentially they can actively adjust the mechanical properties of the basilar membrane during auditory stimulation.
内耳的耳蜗不再仅仅被视为一个被动的机械信号分析仪。主动机械过程被认为会影响基底膜的振动模式。这些主动机械过程的来源被认为是外毛细胞(OHC)。这些听觉感觉细胞含有肌动蛋白和与肌动蛋白相关的结构元件。最近,已证明分离的外毛细胞在体外能够进行可逆的纵向收缩,然而其分子机制尚未得到证实。此外,在细胞内Ca2+水平升高后,分离的外毛细胞在ATP存在的情况下表现出纵向运动反应。我们现在报告,在OHC中观察到的Ca2+/ATP诱导的机械事件是由ATP的水解能量驱动的主动过程。此外,运动反应通常与包括静纤毛束在内的表皮板的运动有关。细胞松弛素B、无机双磷酸盐、三氟拉嗪和抗肌动蛋白可抑制运动反应。因此,我们的结果表明,外毛细胞具有肌动蛋白依赖性的Ca2+和钙调蛋白控制的运动特性,因此它们有可能在听觉刺激期间主动调节基底膜的机械特性。