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IMP2的轴突定位、RNA相互作用组及其在轴突轨迹发育中的功能。

IMP2 axonal localization, RNA interactome, and function in the development of axon trajectories.

作者信息

Preitner Nicolas, Quan Jie, Li Xinmin, Nielsen Finn C, Flanagan John G

机构信息

Department of Cell Biology and Program in Neuroscience, Harvard Medical School, Boston, MA 02115, USA.

Center for Genomic Medicine, Rigshospitalet, University of Copenhagen, Blegdamsvej 9, Copenhagen Ø DK-2100, Denmark.

出版信息

Development. 2016 Aug 1;143(15):2753-9. doi: 10.1242/dev.128348. Epub 2016 Jul 6.

Abstract

RNA-based regulatory mechanisms play important roles in the development and plasticity of neural circuits and neurological disease. Developing axons provide a model well suited to the study of RNA-based regulation, and contain specific subsets of mRNAs that are locally translated and have roles in axon pathfinding. However, the RNA-binding proteins involved in axon pathfinding, and their corresponding mRNA targets, are still largely unknown. Here we find that the RNA-binding protein IMP2 (Igf2bp2) is strikingly enriched in developing axon tracts, including in spinal commissural axons. We used the HITS-CLIP approach to perform a genome-wide identification of RNAs that interact directly with IMP2 in the native context of developing mouse brain. This IMP2 interactome was highly enriched for mRNA targets related to axon guidance. Accordingly, IMP2 knockdown in the developing spinal cord led to strong defects in commissural axon trajectories at the midline intermediate target. These results reveal a highly distinctive axonal enrichment of IMP2, show that it interacts with a network of axon guidance-related mRNAs, and reveal that it is required for normal axon pathfinding during vertebrate development.

摘要

基于RNA的调控机制在神经回路的发育、可塑性以及神经疾病中发挥着重要作用。正在发育的轴突提供了一个非常适合研究基于RNA调控的模型,并且包含特定的mRNA亚群,这些mRNA在局部被翻译并在轴突导向中发挥作用。然而,参与轴突导向的RNA结合蛋白及其相应的mRNA靶点在很大程度上仍不为人所知。在这里,我们发现RNA结合蛋白IMP2(Igf2bp2)在正在发育的轴突束中显著富集,包括脊髓连合轴突。我们使用HITS-CLIP方法在发育中的小鼠脑的自然环境中对与IMP2直接相互作用的RNA进行全基因组鉴定。这个IMP2相互作用组高度富集了与轴突导向相关的mRNA靶点。相应地,在发育中的脊髓中敲低IMP2会导致连合轴突在中线中间靶点处的轨迹出现严重缺陷。这些结果揭示了IMP2在轴突中高度独特的富集现象,表明它与一个轴突导向相关的mRNA网络相互作用,并揭示了它在脊椎动物发育过程中正常轴突导向中是必需的。

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