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NGL-3与LAR之间的跨突触黏附调节兴奋性突触的形成。

Trans-synaptic adhesion between NGL-3 and LAR regulates the formation of excitatory synapses.

作者信息

Woo Jooyeon, Kwon Seok-Kyu, Choi Seungwon, Kim Seho, Lee Jae-Ran, Dunah Anthone W, Sheng Morgan, Kim Eunjoon

机构信息

National Creative Research Initiative Center for Synaptogenesis and Department of Biological Sciences, Korea.

出版信息

Nat Neurosci. 2009 Apr;12(4):428-37. doi: 10.1038/nn.2279. Epub 2009 Mar 1.

Abstract

Synaptic adhesion molecules regulate multiple steps of synapse formation and maturation. The great diversity of neuronal synapses predicts the presence of a large number of adhesion molecules that control synapse formation through trans-synaptic and heterophilic adhesion. We identified a previously unknown trans-synaptic interaction between netrin-G ligand-3 (NGL-3), a postsynaptic density (PSD) 95-interacting postsynaptic adhesion molecule, and leukocyte common antigen-related (LAR), a receptor protein tyrosine phosphatase. NGL-3 and LAR expressed in heterologous cells induced pre- and postsynaptic differentiation in contacting axons and dendrites of cocultured rat hippocampal neurons, respectively. Neuronal overexpression of NGL-3 increased presynaptic contacts on dendrites of transfected neurons. Direct aggregation of NGL-3 on dendrites induced coclustering of excitatory postsynaptic proteins. Knockdown of NGL-3 reduced the number and function of excitatory synapses. Competitive inhibition by soluble LAR reduced NGL-3-induced presynaptic differentiation. These results suggest that the trans-synaptic adhesion between NGL-3 and LAR regulates excitatory synapse formation in a bidirectional manner.

摘要

突触黏附分子调节突触形成和成熟的多个步骤。神经元突触的巨大多样性预示着存在大量通过跨突触和异嗜性黏附来控制突触形成的黏附分子。我们鉴定出一种此前未知的跨突触相互作用,该相互作用发生在与突触后致密物(PSD)95相互作用的突触后黏附分子——网蛋白-G配体-3(NGL-3)和一种受体蛋白酪氨酸磷酸酶——白细胞共同抗原相关分子(LAR)之间。在异源细胞中表达的NGL-3和LAR分别在共培养的大鼠海马神经元的接触轴突和树突中诱导突触前和突触后分化。NGL-3在神经元中的过表达增加了转染神经元树突上的突触前接触。NGL-3在树突上的直接聚集诱导了兴奋性突触后蛋白的共聚集。NGL-3的敲低减少了兴奋性突触的数量和功能。可溶性LAR的竞争性抑制降低了NGL-3诱导的突触前分化。这些结果表明,NGL-3和LAR之间的跨突触黏附以双向方式调节兴奋性突触的形成。

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