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Six1 is essential for differentiation and patterning of the mammalian auditory sensory epithelium

机译:Six1对哺乳动物听觉感觉上皮的分化和模式形成至关重要

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The organ of Corti in the cochlea is a two-cell layered epithelium: one cell layer of mechanosensory hair cells that align into one row of inner and three rows of outer hair cells interdigitated with one cell layer of underlying supporting cells along the entire length of the cochlear spiral. These two types of epithelial cells are derived from common precursors in the four- to five-cell layered primordium and acquire functionally important shapes during terminal differentiation through the thinning process and convergent extension. Here, we have examined the role of Six1 in the establishment of the auditory sensory epithelium. Our data show that prior to terminal differentiation of the precursor cells, deletion of Six1 leads to formation of only a few hair cells and defective patterning of the sensory epithelium. Previous studies have suggested that downregulation of Sox2 expression in differentiating hair cells must occur after Atoh1 mRNA activation in order to allow Atoh1 protein accumulation due to antagonistic effects between Atoh1 and Sox2. Our analysis indicates that downregulation of Sox2 in the differentiating hair cells depends on Six1 activity. Furthermore, we found that Six1 is required for the maintenance of Fgf8 expression and dynamic distribution of N-cadherin and E-cadherin in the organ of Corti during differentiation. Together, our analyses uncover essential roles of Six1 in hair cell differentiation and formation of the organ of Corti in the mammalian cochlea.
机译:耳蜗中的Corti器官是两层分层的上皮细胞:机械感觉毛细胞的一个细胞层与一排内部毛发细胞和三排外部毛发细胞对齐,并沿其整个长度与下层支持细胞的一个细胞层相互交叉。耳蜗螺旋。这两种类型的上皮细胞均来自四至五层分层原基中的常见前体,并在通过细化过程和会聚性延伸进行终末分化期间获得功能上重要的形状。在这里,我们检查了Six1在听觉感觉上皮的建立中的作用。我们的数据表明,在前体细胞终末分化之前,Six1的缺失导致仅少量毛细胞的形成和感觉上皮的模式缺陷。先前的研究表明,在Atoh1 mRNA激活后必须在分化的毛细胞中发生Sox2表达的下调,以便由于Atoh1和Sox2之间的拮抗作用而允许Atoh1蛋白积累。我们的分析表明,分化中的毛细胞中Sox2的下调取决于Six1活性。此外,我们发现Six1是分化过程中维持Corti器官中N-cadherin和E-cadherin的Fgf8表达和动态分布所必需的。总之,我们的分析揭示了Six1在哺乳动物耳蜗的毛细胞分化和Corti器官形成中的重要作用。

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