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microRNA function in left-right neuronal asymmetry: perspectives from C. elegans

机译:microRNA在左右神经元不对称中的功能:秀丽隐杆线虫的观点

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摘要

Left–right asymmetry in anatomical structures and functions of the nervous system is present throughout the animal kingdom. For example, language centers are localized in the left side of the human brain, while spatial recognition functions are found in the right hemisphere in the majority of the population. Disruption of asymmetry in the nervous system is correlated with neurological disorders. Although anatomical and functional asymmetries are observed in mammalian nervous systems, it has been a challenge to identify the molecular basis of these asymmetries. C. elegans has emerged as a prime model organism to investigate molecular asymmetries in the nervous system, as it has been shown to display functional asymmetries clearly correlated to asymmetric distribution and regulation of biologically relevant molecules. Small non-coding RNAs have been recently implicated in various aspects of neural development. Here, we review cases in which microRNAs are crucial for establishing left–right asymmetries in the C. elegans nervous system. These studies may provide insight into how molecular and functional asymmetries are established in the human brain.
机译:整个动物界都存在神经系统的解剖结构和功能中的左右不对称现象。例如,语言中心位于人脑的左侧,而空间识别功能位于大多数人口的右半球。神经系统不对称的破坏与神经系统疾病有关。尽管在哺乳动物神经系统中观察到了解剖和功能上的不对称性,但是鉴定这些不对称性的分子基础一直是一个挑战。秀丽隐杆线虫已经成为研究神经系统分子不对称性的主要模型生物,因为它已显示出与生物相关分子的不对称分布和调控明显相关的功能性不对称性。小型非编码RNA最近已牵涉到神经发育的各个方面。在这里,我们回顾了其中微小RNA对于在秀丽隐杆线虫神经系统中建立左右不对称性至关重要的情况。这些研究可以提供有关如何在人脑中建立分子和功能不对称的见解。

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