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Lingo-1胞外结构域的结构,这是一个与中枢神经系统修复抑制有关的模块。

The structure of the Lingo-1 ectodomain, a module implicated in central nervous system repair inhibition.

作者信息

Mosyak Lidia, Wood Andrew, Dwyer Brian, Buddha Madhavan, Johnson Mark, Aulabaugh Ann, Zhong Xiaotian, Presman Eleonora, Benard Susan, Kelleher Kerry, Wilhelm James, Stahl Mark L, Kriz Ron, Gao Ying, Cao Zixuan, Ling Huai-Ping, Pangalos Menelas N, Walsh Frank S, Somers William S

机构信息

Department of Chemical and Screening sciences, Wyeth Research, Cambridge, Massachusetts 02140, USA.

出版信息

J Biol Chem. 2006 Nov 24;281(47):36378-90. doi: 10.1074/jbc.M607314200. Epub 2006 Sep 27.

Abstract

Nogo receptor (NgR)-mediated control of axon growth relies on the central nervous system-specific type I transmembrane protein Lingo-1. Interactions between Lingo-1 and NgR, along with a complementary co-receptor, result in neurite and axonal collapse. In addition, the inhibitory role of Lingo-1 is particularly important in regulation of oligodendrocyte differentiation and myelination, suggesting that pharmacological modulation of Lingo-1 function could be a novel approach for nerve repair and remyelination therapies. Here we report on the crystal structure of the ligand-binding ectodomain of human Lingo-1 and show it has a bimodular, kinked structure composed of leucine-rich repeat (LRR) and immunoglobulin (Ig)-like modules. The structure, together with biophysical analysis of its solution properties, reveals that in the crystals and in solution Lingo-1 persistently associates with itself to form a stable tetramer and that it is its LRR-Ig-composite fold that drives such assembly. Specifically, in the crystal structure protomers of Lingo-1 associate in a ring-shaped tetramer, with each LRR domain filling an open cleft in an adjacent protomer. The tetramer buries a large surface area (9,200 A2) and may serve as an efficient scaffold to simultaneously bind and assemble the NgR complex components during activation on a membrane. Potential functional binding sites that can be identified on the ectodomain surface, including the site of self-recognition, suggest a model for protein assembly on the membrane.

摘要

Nogo受体(NgR)介导的轴突生长控制依赖于中枢神经系统特异性的I型跨膜蛋白Lingo-1。Lingo-1与NgR以及一种互补的共受体之间的相互作用会导致神经突和轴突塌陷。此外,Lingo-1的抑制作用在少突胶质细胞分化和髓鞘形成的调节中尤为重要,这表明对Lingo-1功能进行药理学调节可能是神经修复和髓鞘再生治疗的一种新方法。在此,我们报道了人Lingo-1配体结合胞外域的晶体结构,并表明它具有由富含亮氨酸重复序列(LRR)和免疫球蛋白(Ig)样模块组成的双模块、扭结结构。该结构及其溶液性质的生物物理分析表明,在晶体和溶液中,Lingo-1持续地与自身结合形成稳定的四聚体,并且是其LRR-Ig复合折叠驱动了这种组装。具体而言,在晶体结构中,Lingo-1的原体以环状四聚体形式结合,每个LRR结构域填充相邻原体中的一个开放裂隙。四聚体掩埋了大面积(9200 Ų),可能作为一个有效的支架,在膜上激活过程中同时结合并组装NgR复合体成分。在外显子域表面可识别的潜在功能结合位点,包括自我识别位点,提示了膜上蛋白质组装的模型。

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