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Mutations in Protocadherin 15 and Cadherin 23 Affect Tip Links and Mechanotransduction in Mammalian Sensory Hair Cells

机译:Protocadherin 15和Cadherin 23中的突变影响哺乳动物感觉毛细胞的尖端连接和机械转导。

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摘要

Immunocytochemical studies have shown that protocadherin-15 (PCDH15) and cadherin-23 (CDH23) are associated with tip links, structures thought to gate the mechanotransducer channels of hair cells in the sensory epithelia of the inner ear. The present report describes functional and structural analyses of hair cells from Pcdh15av3J (av3J), Pcdh15av6J (av6J) and Cdh23v2J (v2J) mice. The av3J and v2J mice carry point mutations that are predicted to introduce premature stop codons in the transcripts for Pcdh15 and Cdh23, respectively, and av6J mice have an in-frame deletion predicted to remove most of the 9th cadherin ectodomain from PCDH15. Severe disruption of hair-bundle morphology is observed throughout the early-postnatal cochlea in av3J/av3J and v2J/v2J mice. In contrast, only mild-to-moderate bundle disruption is evident in the av6J/av6J mice. Hair cells from av3J/av3J mice are unaffected by aminoglycosides and fail to load with [3H]-gentamicin or FM1-43, compounds that permeate the hair cell's mechanotransducer channels. In contrast, hair cells from av6J/av6J mice load with both FM1-43 and [3H]-gentamicin, and are aminoglycoside sensitive. Transducer currents can be recorded from hair cells of all three mutants but are reduced in amplitude in all mutants and have abnormal directional sensitivity in the av3J/av3J and v2J/v2J mutants. Scanning electron microscopy of early postnatal cochlear hair cells reveals tip-link like links in av6J/av6J mice, substantially reduced numbers of links in the av3J/av3J mice and virtually none in the v2J/v2J mice. Analysis of mature vestibular hair bundles reveals an absence of tip links in the av3J/av3J and v2J/v2J mice and a reduction in av6J/av6J mice. These results therefore provide genetic evidence consistent with PCDH15 and CDH23 being part of the tip-link complex and necessary for normal mechanotransduction.
机译:免疫细胞化学研究表明,procadcadherin-15(PCDH15)和cadherin-23(CDH23)与尖端连接有关,这些连接被认为可以控制内耳感觉上皮中毛细胞的机械换能器通道。本报告描述了来自Pcdh15av3J(av3J),Pcdh15av6J(av6J)和Cdh23v2J(v2J)小鼠的毛细胞的功能和结构分析。 av3J和v2J小鼠携带点突变,预计分别会在Pcdh15和Cdh23的转录本中引入过早的终止密码子,而av6J小鼠的读框内缺失预计会从PCDH15去除大部分第9个钙粘蛋白胞外域。在av3J / av3J和v2J / v2J小鼠的整个产后早期耳蜗中都观察到了严重的束发形态破坏。相反,在av6J / av6J小鼠中,只有轻度至中度的束破坏是明显的。来自av3J / av3J小鼠的毛细胞不受氨基糖苷的影响,并且无法加载[3H]-庆大霉素或FM1-43,这些化合物会渗透到毛细胞的机械换能器通道中。相反,来自av6J / av6J小鼠的毛细胞同时加载FM1-43和[3H]-庆大霉素,并且对氨基糖苷敏感。可以从所有三个突变体的毛细胞中记录换能器电流,但在所有突变体中其幅值都减小,并且在av3J / av3J和v2J / v2J突变体中具有异常的方向敏感性。早期产后耳蜗毛细胞的扫描电子显微镜显示av6J / av6J小鼠中的尖端连接类似链接,av3J / av3J小鼠中的链接数目显着减少,而v2J / v2J小鼠中几乎没有。对成熟的前庭发束的分析显示,av3J / av3J和v2J / v2J小鼠中没有尖端连接,而av6J / av6J小鼠中则减少了。因此,这些结果提供了与PCDH15和CDH23属于尖端连接复合体的一部分且是正常机械转导所必需的遗传证据。

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