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The Key Transcription Factor Expression in the Developing Vestibular and Auditory Sensory Organs: A Comprehensive Comparison of Spatial and Temporal Patterns

机译:发育中的前庭和听觉感觉器官中的关键转录因子表达:时空格局的综合比较。

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摘要

Inner ear formation requires that a series of cell fate decisions and morphogenetic events occur in a precise temporal and spatial pattern. Previous studies have shown that transcription factors, including Pax2, Sox2, and Prox1, play important roles during the inner ear development. However, the temporospatial expression patterns among these transcription factors are poorly understood. In the current study, we present a comprehensive description of the temporal and spatial expression profiles of Pax2, Sox2, and Prox1 during auditory and vestibular sensory organ development in mice. Using immunohistochemical analyses, we show that Sox2 and Pax2 are both expressed in the prosensory cells (the developing hair cells), but Sox2 is later restricted to only the supporting cells of the organ of Corti. In the vestibular sensory organ, however, the Pax2 expression is localized in hair cells at postnatal day 7, while Sox2 is still expressed in both the hair cells and supporting cells at that time. Prox1 was transiently expressed in the presumptive hair cells and developing supporting cells, and lower Prox1 expression was observed in the vestibular sensory organ compared to the organ of Corti. The different expression patterns of these transcription factors in the developing auditory and vestibular sensory organs suggest that they play different roles in the development of the sensory epithelia and might help to shape the respective sensory structures.
机译:内耳的形成需要一系列细胞命运决定和形态发生事件以精确的时间和空间模式发生。先前的研究表明,转录因子,包括Pax2,Sox2和Prox1,在内耳发育过程中起着重要作用。但是,这些转录因子之间的颞pat表达模式了解得很少。在当前的研究中,我们对小鼠的听觉和前庭感觉器官发育过程中Pax2,Sox2和Prox1的时空表达谱进行了全面的描述。使用免疫组化分析,我们显示Sox2和Pax2都在感觉细胞(发育中的毛细胞)中表达,但后来Sox2仅限于Corti器官的支持细胞。然而,在前庭感觉器官中,Pax2表达在出生后第7天定位在毛细胞中,而那时Sox2仍在毛细胞和支持细胞中表达。 Prox1在假定的毛细胞和发育中的支持细胞中瞬时表达,与Corti器官相比,在前庭感觉器官中观察到较低的Prox1表达。这些转录因子在发育中的听觉和前庭感觉器官中的不同表达方式表明,它们在感觉上皮的发展中起着不同的作用,可能有助于塑造各自的感觉结构。

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