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Retinoic acid signalling regulates the development of tonotopically patterned hair cells in the chicken cochlea

机译:维甲酸信号调节鸡耳蜗中具有局部性图案的毛细胞的发育

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Precise frequency discrimination is a hallmark of auditory function in birds and mammals and is required for distinguishing similar sounding words, like ‘bat,’ ‘cat’ and ‘hat.’ In the cochlea, tuning and spectral separation result from longitudinal differences in basilar membrane stiffness and numerous individual gradations in sensory hair cell phenotypes, but it is unknown what patterns the phenotypes. Here we used RNA-seq to compare transcriptomes from proximal, middle and distal regions of the embryonic chicken cochlea, and found opposing longitudinal gradients of expression for retinoic acid ( RA )-synthesizing and degrading enzymes. In vitro experiments showed that RA is necessary and sufficient to induce the development of distal-like hair cell phenotypes and promotes expression of the actin-crosslinking proteins, Espin and Fscn2 . These and other findings highlight a role for RA signalling in patterning the development of a longitudinal gradient of frequency-tuned hair cell phenotypes in the cochlea.
机译:精确的频率辨别是鸟类和哺乳动物听觉功能的标志,并且是区分相似的发音(例如“蝙蝠”,“猫”和“帽子”)所必需的。在耳蜗中,基层膜的纵向差异导致了调谐和频谱分离硬性和感觉毛细胞表型的众多个体渐变,但尚不清楚什么会影响表型。在这里,我们使用RNA序列比较胚胎鸡耳蜗的近端,中部和远端区域的转录组,并发现了视黄酸(RA)合成和降解酶的相对表达纵向梯度。体外实验表明,RA是诱导远端样毛细胞表型发展并促进肌动蛋白交联蛋白Espin和Fscn2表达的必要条件和充分条件。这些和其他发现突出了RA信号传导在耳蜗中频率调谐的毛细胞表型的纵向梯度发展的模式中的作用。

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