Spatial and temporal expression of PORCN is highly dynamic in the developing mouse cochlea

IF 1 4区 生物学 Q4 DEVELOPMENTAL BIOLOGY Gene Expression Patterns Pub Date : 2021-12-01 DOI:10.1016/j.gep.2021.119214
Brianna L. Oliver , Caryl A. Young , Vidhya Munnamalai
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引用次数: 2

Abstract

The mammalian organ of Corti is a highly specialized sensory organ of the cochlea with a fine-grained pattern that is essential for auditory function. The sensory epithelium, the organ of Corti consists of a single row of inner hair cells and three rows of outer hair cells that are intercalated by support cells in a mosaic pattern. Previous studies show that the Wnt pathway regulates proliferation, promotes medial compartment formation in the cochlea, differentiation of the mechanosensory hair cells and axon guidance of Type II afferent neurons. WNT ligand expressions are highly dynamic throughout development but are insufficient to explain the roles of the Wnt pathway. We address a potential way for how WNTs specify the medial compartment by characterizing the expression of Porcupine (PORCN), an O-acyltransferase that is required for WNT secretion. We show PORCN expression across embryonic ages (E)12.5 - E14.5, E16.5, and postnatal day (P)1. Our results showed enriched PORCN in the medial domains during early stages of development, indicating that WNTs have a stronger influence on patterning of the medial compartment. PORCN was rapidly downregulated after E14.5, following the onset of sensory cell differentiation; residual expression remained in some hair cells and supporting cells. On E14.5 and E16.5, we also examined the spatial expression of Gsk3β, an inhibitor of canonical Wnt signaling to determine its potential role in radial patterning of the cochlea. Gsk3β was broadly expressed across the radial axis of the epithelium; therefore, unlikely to control WNT-mediated medial specification. In conclusion, the spatial expression of PORCN enriches WNT secretion from the medial domains of the cochlea to influence the specification of cell fates in the medial sensory domain.

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在发育中的小鼠耳蜗中,PORCN的时空表达是高度动态的
Corti是哺乳动物耳蜗的一种高度特化的感觉器官,具有精细的纹理,对听觉功能至关重要。感觉上皮是Corti的器官,由单排内毛细胞和三排外毛细胞组成,外毛细胞由支持细胞镶嵌成马赛克图案。既往研究表明,Wnt通路调节耳蜗细胞增殖,促进耳蜗内侧室的形成,促进机械感觉毛细胞的分化和II型传入神经元的轴突引导。WNT配体的表达在整个发育过程中是高度动态的,但不足以解释WNT通路的作用。我们通过表征豪猪(PORCN)的表达来解决WNT如何指定内侧室的潜在方法,豪猪(PORCN)是WNT分泌所必需的o -酰基转移酶。我们发现PORCN在胚胎年龄(E)12.5 - E14.5, E16.5和出生后(P)1中表达。我们的研究结果显示,在发育的早期阶段,内侧区域的PORCN富集,这表明wnt对内侧隔室的模式有更强的影响。在E14.5后,随着感觉细胞分化的开始,PORCN迅速下调;在一些毛细胞和支持细胞中仍有残留表达。在E14.5和E16.5中,我们还检测了典型Wnt信号抑制剂Gsk3β的空间表达,以确定其在耳蜗径向模式中的潜在作用。Gsk3β在上皮径向广泛表达;因此,不太可能控制wnt介导的医学规范。综上所述,PORCN的空间表达丰富了耳蜗内侧区域的WNT分泌,从而影响内侧感觉区域细胞命运的规范。
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来源期刊
Gene Expression Patterns
Gene Expression Patterns 生物-发育生物学
CiteScore
2.30
自引率
0.00%
发文量
42
审稿时长
35 days
期刊介绍: Gene Expression Patterns is devoted to the rapid publication of high quality studies of gene expression in development. Studies using cell culture are also suitable if clearly relevant to development, e.g., analysis of key regulatory genes or of gene sets in the maintenance or differentiation of stem cells. Key areas of interest include: -In-situ studies such as expression patterns of important or interesting genes at all levels, including transcription and protein expression -Temporal studies of large gene sets during development -Transgenic studies to study cell lineage in tissue formation
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Outside Front Cover Editorial Board A great diversity of ROBO4 expression and regulations identified by data mining and transgene mice The expression pattern of Wnt6, Wnt10A, and HOXA13 during regenerating tails of Gekko Japonicus Outside Front Cover
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