Hackney C M, Furness D N
Department of Communication and Neuroscience, University of Keele, Staffordshire, United Kingdom.
Am J Physiol. 1995 Jan;268(1 Pt 1):C1-13. doi: 10.1152/ajpcell.1995.268.1.C1.
The mechanosensitive hair cells of the vertebrate acousticolateralis system have an apical bundle of stereocilia, deflections of which control the opening of mechano-electrical transduction channels and thus generate receptor potentials in the cell below. This review describes current theories of hair cell function in the light of recent immunocytochemical and ultrastructural findings; in particular, the location and operation of the transduction channels are considered. The most widely accepted hypothesis of mechanotransduction by hair cells is that fine extracellular links that run between the tips of shorter stereocilia and the sides of taller ones operate the transduction channels. However, the fact that the transduction channels are amiloride sensitive has led to labeling experiments using antibodies to the amiloride-sensitive epithelial Na+ channel from kidney which suggest that the mechanotransduction channels may not be directly associated with the tip links. Instead, they appear to be located near a junctionlike structure at the point of contact between the shorter and taller stereocilia. The implications of these findings for the tip link hypothesis are discussed.
脊椎动物听侧线系统的机械敏感毛细胞具有一束顶端静纤毛,静纤毛的偏转控制着机械电转导通道的开放,从而在下方的细胞中产生感受器电位。本综述根据最近的免疫细胞化学和超微结构研究结果描述了毛细胞功能的当前理论;特别考虑了转导通道的位置和运作。关于毛细胞机械转导最广泛接受的假说是,在较短静纤毛顶端与较长静纤毛侧面之间延伸的精细细胞外连接操作转导通道。然而,转导通道对氨氯地平敏感这一事实导致了使用针对肾脏中氨氯地平敏感上皮钠通道的抗体进行标记实验,这些实验表明机械转导通道可能与顶端连接没有直接关联。相反,它们似乎位于较短和较长静纤毛接触点处类似连接的结构附近。讨论了这些发现对顶端连接假说的影响。