Caruso Department of Otolaryngology-Head and Neck Surgery, Keck School of Medicine of University of Southern California, Los Angeles, CA 90033.
Department of Stem Cell Biology and Regenerative Medicine, Keck School of Medicine of University of Southern California, Los Angeles, CA 90033.
Proc Natl Acad Sci U S A. 2023 Aug 22;120(34):e2301301120. doi: 10.1073/pnas.2301301120. Epub 2023 Aug 16.
The auditory organ of Corti is comprised of only two major cell types-the mechanosensory hair cells and their associated supporting cells-both specified from a single pool of prosensory progenitors in the cochlear duct. Here, we show that competence to respond to Atoh1, a transcriptional master regulator necessary and sufficient for induction of mechanosensory hair cells, is established in the prosensory progenitors between E12.0 and 13.5. The transition to the competent state is rapid and is associated with extensive remodeling of the epigenetic landscape controlled by the SoxC group of transcription factors. Conditional loss of and -the two homologous family members transiently expressed in the inner ear at the time of competence establishment-blocks the ability of prosensory progenitors to differentiate as hair cells. Mechanistically, we show that Sox4 binds to and establishes accessibility of early sensory lineage-specific regulatory elements, including ones associated with Atoh1 and its direct downstream targets. Consistent with these observations, overexpression of or prior to developmental establishment of competence precociously induces hair cell differentiation in the cochlear progenitors. Further, reintroducing or expression restores the ability of postnatal supporting cells to differentiate as hair cells in vitro and in vivo. Our findings demonstrate the pivotal role of family members as agents of epigenetic and transcriptional changes necessary for establishing competence for sensory receptor differentiation in the inner ear.
耳蜗的听觉器官仅由两种主要细胞类型组成——机械敏感的毛细胞及其相关的支持细胞——它们均由耳蜗管中的单个前体细胞祖细胞池中指定。在这里,我们表明,对 Atoh1 的反应能力,Atoh1 是机械感觉毛细胞诱导所必需的和充分的转录主调控因子,在前体祖细胞中于 E12.0 至 13.5 之间建立。向有能力的状态的转变是迅速的,并与 SoxC 转录因子组控制的表观遗传景观的广泛重塑相关。条件性缺失和 - - - 在有能力的状态建立时在内耳中短暂表达的两个同源家族成员 - - - 阻断了前体细胞祖细胞分化为毛细胞的能力。从机制上讲,我们表明 Sox4 结合并建立了早期感觉谱系特异性调节元件的可及性,包括与 Atoh1 及其直接下游靶标相关的元件。与这些观察结果一致,在发育建立能力之前过表达或过早地诱导耳蜗祖细胞中的毛细胞分化。此外,重新引入或表达恢复了体外和体内出生后支持细胞分化为毛细胞的能力。我们的发现证明了家族成员作为内耳中建立感觉受体分化能力所必需的表观遗传和转录变化的代理的关键作用。