Beurg Maryline, Evans Michael G, Hackney Carole M, Fettiplace Robert
Equipe Associée 3665 Université Victor Segalen Bordeaux 2, Institut National de la Santé et de la Recherche Médicale, Unité 587, Hôpital Pellegrin, 33076 Bordeaux, France.
J Neurosci. 2006 Oct 25;26(43):10992-1000. doi: 10.1523/JNEUROSCI.2188-06.2006.
Sound stimuli are detected in the cochlea by opening of hair cell mechanotransducer (MT) channels, one of the few ion channels not yet conclusively identified at a molecular level. To define their performance in situ, we measured MT channel properties in inner hair cells (IHCs) and outer hair cells (OHCs) at two locations in the rat cochlea tuned to different characteristic frequencies (CFs). The conductance (in 0.02 mM calcium) of MT channels from IHCs was estimated as 260 pS at both low-frequency and mid-frequency positions, whereas that from OHCs increased with CFs from 145 to 210 pS. The combination of MT channel conductance and tip link number, assayed from scanning electron micrographs, accounts for variation in whole-cell current amplitude for OHCs and its invariance for IHCs. Channels from apical IHCs and OHCs having a twofold difference in unitary conductance were both highly calcium selective but were distinguishable by a small but significant difference in calcium permeability and in their response to lowering ionic strength. The results imply that the MT channel has properties possessed by few known candidates, and its diversity suggests expression of multiple isoforms.
声音刺激通过毛细胞机械转导(MT)通道的开放在耳蜗中被检测到,MT通道是少数尚未在分子水平上得到最终鉴定的离子通道之一。为了确定它们在原位的性能,我们在大鼠耳蜗中两个调谐到不同特征频率(CF)的位置测量了内毛细胞(IHC)和外毛细胞(OHC)中的MT通道特性。在低频和中频位置,来自IHC的MT通道在0.02 mM钙中的电导估计为260 pS,而来自OHC的MT通道电导随CF从145 pS增加到210 pS。从扫描电子显微镜图像测定的MT通道电导和纤毛连接数量的组合,解释了OHC全细胞电流幅度的变化及其在IHC中的不变性。来自顶端IHC和OHC的通道,其单通道电导有两倍差异,都具有高度的钙选择性,但在钙通透性及其对降低离子强度的反应方面存在微小但显著的差异,从而得以区分。结果表明,MT通道具有很少有已知候选通道具备的特性,其多样性表明存在多种亚型的表达。