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Fluorescence-Imaged Microdeformation of the Outer Hair Cell Lateral Wall

机译:荧光成像的外毛细胞侧壁的微变形

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摘要

Outer hair cell (OHC) electromotility appears to be central to mammalian hearing and originates within its lateral wall. The OHC lateral wall is a unique trilaminate structure consisting of the plasma membrane (PM), the cortical lattice (CL), and the subsurface cisternae (SSC). We selectively labeled and imaged the lateral wall components in the isolated guinea pig OHC under confocal microscopy. The PM was labeled with a voltage-sensitive dye, di-8-ANEPPS; the SSC was labeled with the sphingomyelin precursor, NBD-C6-ceramide; and F-actin in the CL was labeled with conjugates of phalloidin. Interactions among the three layers were evaluated with the micropipette aspiration technique. The PM was tethered to the CL and SSC until, at a critical deformation pressure, the PM separated, allowing visualization of the extracisternal space, and ultimately formed a vesicle. After detaching, the stiffness parameter of the PM was 22% of that of the intact lateral wall. We conclude that the lateral wall PM is more compliant than the CL/SSC complex. The data clarify the structural basis for electromotile force coupling in the OHC lateral wall.
机译:外毛细胞(OHC)电动性似乎是哺乳动物听力的中心,并起源于其侧壁。 OHC侧壁是独特的三层结构,由质膜(PM),皮层格(CL)和地下水池(SSC)组成。我们在共聚焦显微镜下对分离的豚鼠OHC中的侧壁成分进行了选择性标记和成像。 PM用压敏染料di-8-ANEPPS标记; SSC用鞘磷脂前体NBD-C6-神经酰胺标记。 CL中的F-肌动蛋白用鬼笔环肽标记。使用微量移液器抽吸技术评估了三层之间的相互作用。将PM束缚在CL和SSC上,直到在临界变形压力下PM分离为止,从而可以观察到胸膜外空间,并最终形成囊泡。分离后,PM的刚度参数是完整侧壁的刚度参数的22%。我们得出结论,侧壁PM比CL / SSC复合体更顺应。数据阐明了OHC侧壁中电动势耦合的结构基础。

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