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微 RNA 在轴突导向中的作用。

microRNAs in axon guidance.

机构信息

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

Department of Physiology, Development and Neuroscience, University of Cambridge Cambridge, UK.

出版信息

Front Cell Neurosci. 2014 Mar 14;8:78. doi: 10.3389/fncel.2014.00078. eCollection 2014.

Abstract

Brain wiring is a highly intricate process in which trillions of neuronal connections are established. Its initial phase is particularly crucial in establishing the general framework of neuronal circuits. During this early step, differentiating neurons extend axons, which reach their target by navigating through a complex environment with extreme precision. Research in the past 20 years has unraveled a vast and complex array of chemotropic cues that guide the leading tip of axons, the growth cone, throughout its journey. Tight regulation of these cues, and of their receptors and signaling pathways, is necessary for the high degree of accuracy required during circuit formation. However, little is known about the nature of regulatory molecules or mechanisms fine-tuning axonal cue response. Here we review recent, and somewhat fragmented, research on the possibility that microRNAs (miRNAs) could be key fine-tuning regulatory molecules in axon guidance. miRNAs appear to shape long-range axon guidance, fasciculation and targeting. We also present several lines of evidence suggesting that miRNAs could have a compartmentalized and differential action at the cell soma, and within axons and growth cones.

摘要

大脑连接是一个高度复杂的过程,其中建立了数万亿个神经元连接。其初始阶段对于建立神经元回路的总体框架尤为关键。在这个早期步骤中,分化神经元伸出轴突,通过极其精确地导航穿过复杂的环境到达目标。过去 20 年的研究揭示了大量复杂的趋化线索,这些线索引导轴突的前端,即生长锥,在其整个旅程中前进。这些线索及其受体和信号通路的严格调节对于形成回路所需的高度准确性是必要的。然而,对于微调轴突线索反应的调节分子或机制的性质知之甚少。在这里,我们回顾了最近的一些研究,这些研究表明 microRNAs(miRNAs)可能是轴突导向的关键微调调节分子。miRNAs 似乎可以塑造长距离轴突导向、成束和靶向。我们还提出了几条证据表明,miRNAs 可能在细胞体、轴突和生长锥内具有分区和差异化的作用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/7d4a/3953822/4dbf4ed4e75e/fncel-08-00078-g0001.jpg

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