Department of Otolaryngology - Head and Neck Surgery, Kyoto University Graduate School of Medicine, Kyoto 606-8507, Japan
Department of Speech and Hearing Sciences and Disorders, Faculty of Health and Medical Science, Kyoto University of Advanced Science, Kyoto 615-8577, Japan.
Development. 2019 Nov 1;146(21):dev177881. doi: 10.1242/dev.177881.
During cochlear development, hair cells (HCs) and supporting cells differentiate in the prosensory domain to form the organ of Corti, but how one row of inner HCs (IHCs) and three rows of outer HCs (OHCs) are organized is not well understood. Here, we investigated the process of HC induction by monitoring Atoh1 expression in cochlear explants of EGFP knock-in mouse embryos and showed that only the cells that express Atoh1 over a certain threshold are selected for HC fate determination. HC induction initially occurs at the medial edge of the prosensory domain to form IHCs and subsequently at the lateral edge to form OHCs, while Hedgehog signaling maintains a space between IHCs and OHCs, leading to formation of the tunnel of Corti. These results reveal dynamic Atoh1 expression in HC fate control and suggest that multi-directional signals regulate OHC induction, thereby organizing the prototype of the organ of Corti.
在耳蜗发育过程中,毛细胞(HCs)和支持细胞在前体感觉域分化,形成柯蒂氏器,但人们对如何组织一行内毛细胞(IHCs)和三行外毛细胞(OHCs)知之甚少。在这里,我们通过监测 EGFP 敲入小鼠胚胎耳蜗外植体中的 Atoh1 表达来研究 HCs 诱导的过程,并表明只有表达超过一定阈值的 Atoh1 的细胞才被选择用于 HCs 命运决定。HC 诱导最初发生在前体感觉域的内侧边缘,形成 IHCs,随后发生在外侧边缘,形成 OHCs,而 Hedgehog 信号维持 IHCs 和 OHCs 之间的空间,导致 Corti 隧道的形成。这些结果揭示了 Atoh1 在 HCs 命运控制中的动态表达,并表明多向信号调节 OHC 诱导,从而组织柯蒂氏器的原型。