Pickles J O, Rouse G W, von Perger M
Department of Physiology and Pharmacology, University of Queensland, Australia.
Scanning Microsc. 1991 Dec;5(4):1115-24; discussion 1124-8.
The development of ideas on mechanotransduction in acousticolateral hair cells is described, leading to the current idea that transduction depends on deflection of the bundle of stereocilia by a force parallel to the plane of the sensory epithelium. Electrophysiological experiments are summarised, suggesting that transduction depends on a shear between the different rows of stereocilia, and that the transducer channels are situated towards the tips of the stereocilia. Analysis of the ways that shear between the rows of stereocilia could be detected suggests that tip links are the structures which are most likely to transmit the stimulus-induced forces to the transducer channels on the membrane. The directional selectivity of mechanotransduction is associated with the position of the kinocilium and gradation in heights of the stereocilia; evidence is presented suggesting that in the lateral line these are partly determined by the mitosis giving rise to the hair cell. Tip links differentiate out of links which initially join the stereocilia in all directions, with their final spatial organisation, which sets the directional selectivity of mechanotransduction, probably being determined by the gradient in growth of the stereocilia.
本文描述了关于听觉外侧毛细胞机械转导机制的观点发展,进而引出了当前的观点:转导依赖于平行于感觉上皮平面的力使静纤毛束发生偏转。总结了电生理实验,这些实验表明转导依赖于不同排静纤毛之间的剪切力,并且转导通道位于静纤毛的尖端。对检测静纤毛排之间剪切力的方式进行分析表明,顶连是最有可能将刺激诱导的力传递到膜上转导通道的结构。机械转导的方向选择性与动纤毛的位置以及静纤毛高度的梯度有关;有证据表明,在侧线中,这些部分是由产生毛细胞的有丝分裂决定的。顶连是从最初向各个方向连接静纤毛的连接中分化出来的,其最终的空间组织决定了机械转导的方向选择性,这可能是由静纤毛生长的梯度决定的。