IgLON家族成员neurotrimin和LAMP之间的互补表达和异亲性相互作用。

O. Gil, Li Zhang, Suzanne Chen, Y. Ren, A. Pimenta, G. Zanazzi, D. Hillman, P. Levitt, J. Salzer
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引用次数: 63

摘要

神经trimin (Ntm)和边缘系统相关膜蛋白(LAMP)是IgLON (LAMP, OBCAM, Ntm)家族的成员,是甘酰磷脂酰肌醇锚定的神经细胞粘附分子。我们之前报道过LAMP和Ntm通过亲同性机制促进粘附和神经突生长,这表明这些蛋白质通过亲同性相互作用促进特定神经元回路的形成。在本报告中,我们进一步表征了Ntm的表达和结合特异性。使用新生成的Ntm单克隆抗体,我们证明了该蛋白在神经系统中以与LAMP互补的模式大量表达,并在少数位点共表达。Ntm在感觉-运动皮层中有高水平的表达,特别值得注意的是,它在皮层桶状野的神经元和相应的丘脑“类桶状体”中有短暂的表达。重组、可溶性形式的Ntm与表达Ntm或LAMP的CHO细胞结合,表明Ntm和LAMP具有同源性和异亲性相互作用。与Ig超家族成员的常规促生长活性相反,LAMP以异源性方式强烈抑制表达ntm的背根神经节(DRG)神经元的生长。这些解剖和功能数据支持IgLON家族成员之间的亲同性和异性相互作用可能分别通过促进和抑制生长作用在神经元投射的规范中发挥作用。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Complementary expression and heterophilic interactions between IgLON family members neurotrimin and LAMP.
Neurotrimin (Ntm) and the limbic system-associated membrane protein (LAMP) are members of the IgLON (LAMP, OBCAM, Ntm) family of glycorylphosphatidylinositol anchored neural cell adhesion molecules. We previously reported that LAMP and Ntm promote adhesion and neurite outgrowth via a homophilic mechanism, suggesting that these proteins promote the formation of specific neuronal circuits by homophilic interactions. In this report, we have further characterized the expression and binding specificity of Ntm. Using a newly generated monoclonal antibody to Ntm, we demonstrated that this protein is largely expressed in a complementary pattern to that of LAMP in the nervous system, with co-expression at a few sites. Ntm is expressed at high levels in sensory-motor cortex and, of particular note, is transiently expressed in neurons of cortical barrel fields and corresponding thalamic "barreloids." Binding of a recombinant, soluble form of Ntm to CHO cells expressing either Ntm or LAMP demonstrates that Ntm and LAMP interact both homophilically and heterophilically. In contrast to conventional growth-promoting activity of Ig superfamily members, LAMP strongly inhibits the outgrowth of Ntm-expressing dorsal root ganglion (DRG) neurons in a heterophilic manner. These anatomical and functional data support the concept that homophilic and heterophilic interactions between IgLON family members are likely to play a role in the specification of neuronal projections via growth promoting and inhibiting effects, respectively.
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