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层粘连蛋白α5的LG1-3串联体包含路德维希/基底细胞粘附分子以及α3β1/α6β1整合素的结合位点。

The LG1-3 tandem of laminin alpha5 harbors the binding sites of Lutheran/basal cell adhesion molecule and alpha3beta1/alpha6beta1 integrins.

作者信息

Kikkawa Yamato, Sasaki Takako, Nguyen Mai Tuyet, Nomizu Motoyoshi, Mitaka Toshihiro, Miner Jeffrey H

机构信息

Renal Division, Department of Internal Medicine, Washington University School of Medicine, St. Louis, Missouri 63110, USA.

出版信息

J Biol Chem. 2007 May 18;282(20):14853-60. doi: 10.1074/jbc.M611706200. Epub 2007 Mar 23.

Abstract

The laminin-type globular (LG) domains of laminin alpha chains have been implicated in various cellular interactions that are mediated through receptors such as integrins, alpha-dystroglycan, syndecans, and the Lutheran blood group glycoprotein (Lu). Lu, an Ig superfamily transmembrane receptor specific for laminin alpha5, is also known as basal cell adhesion molecule (B-CAM). Although Lu/B-CAM binds to the LG domain of laminin alpha5, the binding site has not been precisely defined. To better delineate this binding site, we produced a series of recombinant laminin trimers containing modified alpha chains, such that all or part of alpha5LG was replaced with analogous segments of human laminin alpha1LG. In solid phase binding assays using a soluble Lu (Lu-Fc) composed of the Lu extracellular domain and human IgG1 Fc, we found that Lu bound to Mr5G3, a recombinant laminin containing alpha5 domains LN through LG3 fused to human laminin alpha1LG4-5. However, Lu/B-CAM did not bind other recombinant laminins containing alpha5LG3 unless alpha5LG1-2 was also present. A recombinant alpha5LG1-3 tandem lacking the laminin coiled coil (LCC) domain did not reproduce the activity of Lu/B-CAM binding. Therefore, proper structure of the alpha5LG1-3 tandem with the LCC domain was essential for the binding of Lu/B-CAM to laminin alpha5. Our results also suggest that the binding site for Lu/B-CAM on laminin alpha5 may overlap with that of integrins alpha3beta1 and alpha6beta1.

摘要

层粘连蛋白α链的层粘连蛋白型球状(LG)结构域参与了多种细胞相互作用,这些相互作用是通过整合素、α- dystroglycan、多配体蛋白聚糖和路德血型糖蛋白(Lu)等受体介导的。Lu是一种对层粘连蛋白α5具有特异性的免疫球蛋白超家族跨膜受体,也被称为基底细胞粘附分子(B-CAM)。尽管Lu/B-CAM与层粘连蛋白α5的LG结构域结合,但其结合位点尚未精确确定。为了更好地描绘这个结合位点,我们制备了一系列含有修饰α链的重组层粘连蛋白三聚体,使得α5LG的全部或部分被人层粘连蛋白α1LG的类似片段所取代。在使用由Lu细胞外结构域和人IgG1 Fc组成的可溶性Lu(Lu-Fc)进行的固相结合试验中,我们发现Lu与Mr5G3结合,Mr5G3是一种重组层粘连蛋白,其α5结构域LN通过LG3与人类层粘连蛋白α1LG4-5融合。然而,Lu/B-CAM不与其他含有α5LG3的重组层粘连蛋白结合,除非α5LG1-2也存在。一个缺乏层粘连蛋白卷曲螺旋(LCC)结构域的重组α5LG1-3串联体不能重现Lu/B-CAM结合的活性。因此,具有LCC结构域的α5LG1-3串联体的适当结构对于Lu/B-CAM与层粘连蛋白α5的结合至关重要。我们的结果还表明,层粘连蛋白α5上Lu/B-CAM的结合位点可能与整合素α3β1和α6β1的结合位点重叠。

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