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Lmo4 在小鼠内耳前庭形态发生中的需求。

Requirement for Lmo4 in the vestibular morphogenesis of mouse inner ear.

机构信息

University of Rochester Flaum Eye Institute, University of Rochester, Rochester, NY 14642, USA.

出版信息

Dev Biol. 2010 Feb 1;338(1):38-49. doi: 10.1016/j.ydbio.2009.11.003. Epub 2009 Nov 10.

Abstract

During development, compartmentalization of an early embryonic structure produces blocks of cells with distinct properties and developmental potentials. The auditory and vestibular components of vertebrate inner ears are derived from defined compartments within the otocyst during embryogenesis. The vestibular apparatus, including three semicircular canals, saccule, utricle, and their associated sensory organs, detects angular and linear acceleration of the head and relays the information through vestibular neurons to vestibular nuclei in the brainstem. How the early developmental events manifest vestibular structures at the molecular level is largely unknown. Here, we show that LMO4, a LIM-domain-only transcriptional regulator, is required for the formation of semicircular canals and their associated sensory cristae. Targeted disruption of Lmo4 resulted in the dysmorphogenesis of the vestibule and in the absence of three semicircular canals, anterior and posterior cristae. In Lmo4-null otocysts, canal outpouches failed to form and cell proliferation was reduced in the dorsolateral region. Expression analysis of the known otic markers showed that Lmo4 is essential for the normal expression of Bmp4, Fgf10, Msx1, Isl1, Gata3, and Dlx5 in the dorsolateral domain of the otocyst, whereas the initial compartmentalization of the otocyst remains unaffected. Our results demonstrate that Lmo4 controls the development of the dorsolateral otocyst into semicircular canals and cristae through two distinct mechanisms: regulating the expression of otic specific genes and stimulating the proliferation of the dorsolateral part of the otocyst.

摘要

在胚胎发育过程中,早期胚胎结构的分隔产生具有不同特性和发育潜能的细胞块。脊椎动物内耳的听觉和前庭成分是在胚胎发生过程中由听泡内的特定隔室衍生而来的。前庭器官包括三个半规管、椭圆囊、球囊及其相关的感觉器官,用于检测头部的角加速度和线加速度,并通过前庭神经元将信息传递到脑干中的前庭核。早期发育事件如何在分子水平上表现出前庭结构在很大程度上是未知的。在这里,我们表明 LIM 结构域只有转录调节剂 LMO4 是形成半规管及其相关感觉嵴所必需的。Lmo4 的靶向破坏导致前庭的发育不良和三个半规管、前嵴和后嵴的缺失。在 Lmo4 缺失的听泡中,管突未能形成,并且背外侧区域的细胞增殖减少。对已知耳标记物的表达分析表明,Lmo4 对于 Bmp4、Fgf10、Msx1、Isl1、Gata3 和 Dlx5 在听泡背外侧域的正常表达是必需的,而听泡的初始隔室化不受影响。我们的结果表明,Lmo4 通过两种不同的机制控制背外侧听泡发育成半规管和嵴:调节耳特异性基因的表达和刺激听泡背外侧部分的增殖。

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