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微小 RNA 在信号素功能和神经回路形成中的作用。

Role of microRNAs in Semaphorin function and neural circuit formation.

机构信息

Center for Integrative Biology, University of Trento, Trento, Italy.

出版信息

Semin Cell Dev Biol. 2013 Mar;24(3):146-55. doi: 10.1016/j.semcdb.2012.11.004. Epub 2012 Dec 5.

Abstract

Since the discovery of the first microRNA (miRNA) almost 20 years ago, insight into their functional role has gradually been accumulating. This class of non-coding RNAs has recently been implicated as key molecular regulators in the biology of most eukaryotic cells, contributing to the physiology of various systems including immune, cardiovascular, nervous systems and also to the pathophysiology of cancers. Interestingly, Semaphorins, a class of evolutionarily conserved signalling molecules, are acknowledged to play major roles in these systems also. This, combined with the fact that Semaphorin signalling requires tight spatiotemporal regulation, a hallmark of miRNA expression, suggests that miRNAs could be crucial regulators of Semaphorin function. Here, we review evidence suggesting that Semaphorin signalling is regulated by miRNAs in various systems in health and disease. In particular, we focus on neural circuit formation, including axon guidance, where Semaphorin function was first discovered.

摘要

自 20 年前发现第一个 microRNA (miRNA) 以来,人们对其功能作用的认识逐渐积累。这类非编码 RNA 最近被认为是大多数真核细胞生物学的关键分子调节剂,有助于包括免疫系统、心血管系统、神经系统在内的各种系统的生理学,也有助于癌症的病理生理学。有趣的是,Semaphorin 是一类进化上保守的信号分子,也被认为在这些系统中发挥主要作用。这一点,加上 Semaphorin 信号需要 miRNA 表达的时空调节这一特征,表明 miRNA 可能是 Semaphorin 功能的关键调节因子。在这里,我们回顾了一些证据,表明 miRNA 在健康和疾病的各种系统中调节 Semaphorin 信号。特别是,我们专注于神经回路形成,包括 Semaphorin 功能最初被发现的轴突导向。

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