Gueta Rachel, Tal Eran, Silberberg Yaron, Rousso Itay
Department of Structural Biology, Weizmann Institute of Science, 76100 Rehovot, Israel.
J Struct Biol. 2007 Jul;159(1):103-10. doi: 10.1016/j.jsb.2007.03.002. Epub 2007 Mar 24.
The tectorial membrane (TM) is a highly hydrated non-cellular matrix situated over the sensory cells of the cochlea. It is widely accepted that the mechanical coupling, between the TM and outer hair cells stereocilia bundles, plays an important role in the cochlea energy transduction mechanism. Recently, we provided supporting evidence for the existence of mechanical coupling by demonstrating that the mechanical properties of the TM change along its longitudinal direction. Since the biochemical composition of the TM is similar throughout its entire length, it is likely that structural differences induce the observed material properties changes. Presently, however, the structure of the TM under physiological environments remains unknown. In this work, the 3D structure of native TM samples is shown by using two-photon second-harmonic imaging microscopy. We find that the collagen fibers at the basal region are arranged in a parallel orientation while being tilted in an angle with respect to the plane of the TM surface at the apical region. Moreover, we find an intensified marginal band at the basal OHC zone which forms a shell-like structure which engulfs the stereocilium imprints surface of the TM. In supports of our previous mechanical characterization, the analysis presented here provides a structural basis for the changes in TM's mechanical properties.
盖膜是一种高度水合的无细胞基质,位于耳蜗的感觉细胞上方。人们普遍认为,盖膜与外毛细胞静纤毛束之间的机械耦合在耳蜗能量转导机制中起着重要作用。最近,我们通过证明盖膜的机械性能沿其纵向方向发生变化,为机械耦合的存在提供了支持性证据。由于盖膜在其整个长度上的生化组成相似,很可能是结构差异导致了观察到的材料性能变化。然而,目前生理环境下盖膜的结构仍然未知。在这项工作中,通过使用双光子二次谐波成像显微镜展示了天然盖膜样本的三维结构。我们发现,基部区域的胶原纤维呈平行排列,而在顶部区域相对于盖膜表面平面倾斜一定角度。此外,我们在基部外毛细胞区域发现了一条强化的边缘带,它形成了一种壳状结构,包围着盖膜的静纤毛印记表面。作为对我们之前力学表征的支持,此处给出的分析为盖膜力学性能的变化提供了结构基础。