Multifaceted roles of sonic hedgehog signaling in mammalian inner ear development

IF 2.5 3区 生物学 Q2 DEVELOPMENTAL BIOLOGY
Tianli Qin, Marianne E. Bronner
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Abstract

The inner ear is an intricate structure that houses six sensory organs responsible for both hearing and balance. The development of the inner ear begins with the formation of the otic placode, a transient ectodermal thickening that emerges early during embryonic development. The otic placode undergoes a series of morphological changes, from thickening to invagination and then pinching off from the ectoderm to form the otic vesicle, which further differentiates into the specialized structures of the inner ear. These developmental processes require a coordinated interplay between intrinsic transcription factors and extrinsic signaling molecules, which regulate the patterning, proliferation, and differentiation of the inner ear components. In this review, we focus on the role of Sonic hedgehog (Shh) signaling in the development of the mammalian inner ear. We explore how Shh signaling is involved at multiple stages of inner ear development, including the patterning of the otic vesicle and the differentiation of specific cell types within the cochlea. Additionally, we discuss the mechanisms by which Shh signaling integrates with other signaling pathways and transcription factors to ensure the proper development and function of the inner ear. Understanding the molecular basis of these processes provides valuable insights into inner ear development and its disorders.
sonic hedgehog信号在哺乳动物内耳发育中的多重作用
内耳是一个复杂的结构,它容纳了六个负责听力和平衡的感觉器官。内耳的发育开始于耳基板的形成,这是胚胎发育早期出现的一种短暂的外胚层增厚。耳基体经历了一系列的形态学变化,从增厚到内陷,再从外胚层挤压而出,形成耳小泡,并进一步分化为内耳的专门结构。这些发育过程需要内源性转录因子和外源性信号分子之间的协调相互作用,内源性信号分子调节内耳成分的模式、增殖和分化。本文就哺乳动物内耳发育过程中Shh信号通路的作用进行综述。我们探讨了Shh信号如何参与内耳发育的多个阶段,包括耳蜗囊泡的模式和耳蜗内特定细胞类型的分化。此外,我们还讨论了Shh信号与其他信号通路和转录因子整合以确保内耳正常发育和功能的机制。了解这些过程的分子基础为内耳发育及其疾病提供了有价值的见解。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
Developmental biology
Developmental biology 生物-发育生物学
CiteScore
5.30
自引率
3.70%
发文量
182
审稿时长
1.5 months
期刊介绍: Developmental Biology (DB) publishes original research on mechanisms of development, differentiation, and growth in animals and plants at the molecular, cellular, genetic and evolutionary levels. Areas of particular emphasis include transcriptional control mechanisms, embryonic patterning, cell-cell interactions, growth factors and signal transduction, and regulatory hierarchies in developing plants and animals.
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