Ministry of Education-Shanghai Key Laboratory of Children's Environmental Health, Institute of Early Life Health, Xinhua Hospital, Shanghai Jiaotong University School of Medicine, Shanghai 200092, China.
Department of Pathophysiology, Naval Medical University, Shanghai 200433, China.
Proc Natl Acad Sci U S A. 2023 Jun 13;120(24):e2220867120. doi: 10.1073/pnas.2220867120. Epub 2023 Jun 6.
The mammalian cochlear epithelium undergoes substantial remodeling and maturation before the onset of hearing. However, very little is known about the transcriptional network governing cochlear late-stage maturation and particularly the differentiation of its lateral nonsensory region. Here, we establish ZBTB20 as an essential transcription factor required for cochlear terminal differentiation and maturation and hearing. ZBTB20 is abundantly expressed in the developing and mature cochlear nonsensory epithelial cells, with transient expression in immature hair cells and spiral ganglion neurons. Otocyst-specific deletion of causes profound deafness with reduced endolymph potential in mice. The subtypes of cochlear epithelial cells are normally generated, but their postnatal development is arrested in the absence of ZBTB20, as manifested by an immature appearance of the organ of Corti, malformation of tectorial membrane (TM), a flattened spiral prominence (SP), and a lack of identifiable Boettcher cells. Furthermore, these defects are related with a failure in the terminal differentiation of the nonsensory epithelium covering the outer border Claudius cells, outer sulcus root cells, and SP epithelial cells. Transcriptome analysis shows that ZBTB20 regulates genes encoding for TM proteins in the greater epithelial ridge, and those preferentially expressed in root cells and SP epithelium. Our results point to ZBTB20 as an essential regulator for postnatal cochlear maturation and particularly for the terminal differentiation of cochlear lateral nonsensory domain.
哺乳动物耳蜗上皮在听力开始前经历了大量的重塑和成熟。然而,对于控制耳蜗晚期成熟的转录网络,特别是其侧向非感觉区域的分化,我们知之甚少。在这里,我们确定 ZBTB20 是一个必需的转录因子,对于耳蜗终末分化和成熟以及听力是必需的。ZBTB20 在发育中和成熟的耳蜗非感觉上皮细胞中大量表达,在未成熟的毛细胞和螺旋神经节神经元中有短暂表达。在发育中的耳囊中特异性缺失导致小鼠出现严重的耳聋,并伴有内淋巴电位降低。耳蜗上皮细胞的亚型通常会产生,但是在缺乏 ZBTB20 的情况下,它们的出生后发育会停滞,表现为 Corti 器官不成熟、听骨膜(TM)畸形、扁平的螺旋隆起(SP)和无法识别的 Boettcher 细胞。此外,这些缺陷与覆盖外 Claudius 细胞、外嵴根细胞和 SP 上皮细胞的非感觉上皮细胞的终末分化失败有关。转录组分析表明,ZBTB20 调节较大上皮嵴中 TM 蛋白的编码基因,以及那些在根细胞和 SP 上皮细胞中优先表达的基因。我们的结果表明,ZBTB20 是耳蜗出生后成熟的一个必需调节因子,特别是对耳蜗侧向非感觉区域的终末分化。