首页> 美国卫生研究院文献>Biochemical Journal >Beta1 integrin and alpha-dystroglycan binding sites are localized to different laminin-G-domain-like (LG) modules within the laminin alpha5 chain G domain.
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Beta1 integrin and alpha-dystroglycan binding sites are localized to different laminin-G-domain-like (LG) modules within the laminin alpha5 chain G domain.

机译:Beta1整合素和α-dystroglycan结合位点位于层粘连蛋白α5链G域内的不同层粘连蛋白G域样(LG)模块。

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摘要

Laminins are a group of extracellular-matrix proteins important in development and disease. They are heterotrimers, and specific domains in the different chains have specialized functions. The G domain of the alpha5 chain has now been produced in transfected mammalian cells as single modules and two tandem arrays, alpha5LG1-3 and alpha5LG4-5 (LG is laminin G domain-like). Using these fragments we produced specific polyclonal antibodies functional in immunoblotting and immunofluorescence studies and in solid-phase assays. Both alpha5LG tandem arrays had physiologically relevant affinities for sulphated ligands such as heparin and sulphatides. Cells adhered to these fragments and acquired a spread morphology when plated on alpha5LG1-3. Binding of integrins alpha3beta1 and alpha6beta1 was localized to the alpha5LG1-3 modules, and alpha-dystroglycan binding was localized to the alpha5LG4-5 modules, thus locating these activities to different LG modules within the laminin alpha5 G domain. However, both these activities were of relatively low affinity, indicating that integrin-mediated cell adhesion to the laminin 10/11 alpha5G domain depends on contributions from the other chains of the heterotrimer and that high-affinity alpha-dystroglycan binding could be dependent on specific Ca(2+)-ion-co-ordinating amino acids absent from alpha5LG4-5.
机译:层粘连蛋白是一组在发育和疾病中重要的细胞外基质蛋白。它们是异源三聚体,不同链中的特定结构域具有特定功能。现在,已在转染的哺乳动物细胞中以单个模块和两个串联阵列α5LG1-3和α5LG4-5(α是层粘连蛋白G结构域)产生了α5链的G结构域。使用这些片段,我们产生了在免疫印迹和免疫荧光研究以及固相测定中起作用的特异性多克隆抗体。两个alpha5LG串联阵列对硫酸化的配体(如肝素和硫化物)具有生理相关的亲和力。细胞附着在这些片段上,并在铺在alpha5LG1-3上时获得了扩散形态。整联蛋白alpha3beta1和alpha6beta1的绑定被本地化到alpha5LG1-3模块,而α-dystroglycan绑定被本地化到alpha5LG4-5模块,因此将这些活性定位于层粘连蛋白alpha5 G域内的不同LG模块。但是,这两种活性的亲和力都相对较低,表明整联蛋白介导的细胞对层粘连蛋白10/11 alpha5G结构域的粘附取决于异源三聚体其他链的贡献,而高亲和力的α-dystroglycan结合可能取决于特异性Ca(2+)离子配位氨基酸alpha5LG4-5中不存在。

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