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Mechanisms of Otoconia and Otolith Development

机译:Otoconia和耳石发展的机制。

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Background:Otoconia are bio-crystals that couple mechanic forces to the sensory hair cells in the utricle and saccule, a process essential for us to sense linear acceleration and gravity for the purpose of maintaining bodily balance. In fish, structurally similar bio-crystals called otoliths mediate both balance and hearing. Otoconia abnormalities are common and can cause vertigo and imbalance in humans. However, the molecular etiology of these illnesses is unknown, as investigators have only begun to identify genes important for otoconia formation in recent years. Results:To date, in-depth studies of selected mouse otoconial proteins have been performed, and about 75 zebrafish genes have been identified to be important for otolith development. ConclusionsThis review will summarize recent findings as well as compare otoconia and otolith development. It will provide an updated brief review of otoconial proteins along with an overview of the cells and cellular processes involved. While continued efforts are needed to thoroughly understand the molecular mechanisms underlying otoconia and otolith development, it is clear that the process involves a series of temporally and spatially specific events that are tightly coordinated by numerous proteins. Such knowledge will serve as the foundation to uncover the molecular causes of human otoconia-related disorders. Developmental Dynamics 244:239-253, 2015. (c) 2014 Wiley Periodicals, Inc.
机译:背景:耳垢症是一种生物晶体,其将机械力耦合到囊和囊的感觉毛细胞,这是我们感知线性加速度和重力以维持身体平衡的必不可少的过程。在鱼类中,结构相似的生物晶体称为耳石,介导平衡和听力。耳畸形异常很常见,可导致人的眩晕和失衡。但是,这些疾病的分子病因尚不清楚,因为近年来研究人员才刚刚开始鉴定对耳垢形成重要的基因。结果:迄今为止,已经对选定的小鼠耳锥蛋白进行了深入研究,并且已经鉴定出约75个斑马鱼基因对于耳石的发育很重要。结论本综述将总结最近的发现,并比较耳垢和耳石的发展。它将提供耳锥蛋白的最新简要综述以及有关细胞和细胞过程的概述。尽管需要继续努力以彻底了解耳石症和耳石发展的分子机制,但很明显,该过程涉及一系列在时间和空间上特定的事件,这些事件由众多蛋白质紧密协调。这些知识将为揭示人类耳鸣症相关疾病的分子原因奠定基础。 Developmental Dynamics 244:239-253,2015年。(c)2014 Wiley Periodicals,Inc.

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