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首页> 外文期刊>Frontiers in Cellular Neuroscience >Assembly of Neuronal Connectivity by Neurotrophic Factors and Leucine-Rich Repeat Proteins
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Assembly of Neuronal Connectivity by Neurotrophic Factors and Leucine-Rich Repeat Proteins

机译:通过神经营养因子和富含亮氨酸的重复蛋白组装神经元连通性

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摘要

Proper function of the nervous system critically relies on sophisticated neuronal networks interconnected in a highly specific pattern. The architecture of these connections arises from sequential developmental steps such as axonal growth and guidance, dendrite development, target determination, synapse formation and plasticity. Leucine-rich repeat (LRR) transmembrane proteins have been involved in cell-type specific signaling pathways that underlie these developmental processes. The members of this superfamily of proteins execute their functions acting as trans-synaptic cell adhesion molecules involved in target specificity and synapse formation or working in cis as cell-intrinsic modulators of neurotrophic factor receptor trafficking and signaling. In this review, we will focus on novel physiological mechanisms through which LRR proteins regulate neurotrophic factor receptor signaling, highlighting the importance of these modulatory events for proper axonal extension and guidance, tissue innervation and dendrite morphogenesis. Additionally, we discuss few examples linking this set of LRR proteins to neurodevelopmental and psychiatric disorders.
机译:神经系统的正常功能至关重要地依赖于以高度特定的模式互连的复杂神经网络。这些连接的体系结构来自顺序开发步骤,例如轴突生长和引导,树突发育,目标确定,突触形成和可塑性。富含亮氨酸的重复(LRR)跨膜蛋白已参与了这些发育过程的细胞类型特异性信号通路。该蛋白超家族的成员发挥其功能,充当参与靶标特异性和突触形成的反突触细胞粘附分子,或顺式作用为神经营养因子受体运输和信号传导的细胞内在调节剂。在这篇综述中,我们将专注于通过LRR蛋白调节神经营养因子受体信号传导的新的生理机制,强调这些调节事件对于正确的轴突延伸和引导,组织神经支配和树突形态发生的重要性。此外,我们讨论了一些将这套LRR蛋白与神经发育和精神疾病联系起来的例子。

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