Department of Clinical Biochemistry, Tokyo University of Pharmacy and Life Sciences, 1432-1 Horinouchi, Hachioji, Tokyo, 192-0392, Japan.
Department of Cell Biology and Molecular Medicine, Ehime University Graduate School of Medicine, Toon, Ehime, 791-0295, Japan.
Sci Rep. 2023 Jun 27;13(1):10430. doi: 10.1038/s41598-023-37533-y.
Laminins are a family of heterotrimers composed of α-, β-, and γ-chains in the basement membrane. Five α chains contain laminin globular (LG) domain consisting of five tandem modules (LG1-5 modules) at their C-terminus. Each LG45 modules is connected to a compact cloverleaf-shaped structure of LG1-3 through a flexible linker. Although the accumulated studies of the LG45 modules have suggested differences in each α chain regarding the binding of carbohydrate chain and intramolecular interaction, this remains unclear. In this study, to characterize their functions comparatively, we produced recombinant proteins of LG45 modules of human laminin α1-5 chains. Dystroglycan (DG) modified with matriglycan readily bound to the LG45 modules of α1 and α2 chains but not to the other α chains. In contrast, heparin bound to the LG45 modules of the α chains, except for α2. The binding of heparan sulfate/heparin-linked syndecans (SDCs) to LG45 modules was influenced by their core proteins. Furthermore, the α1 and α4LG45 modules bound to SDCs in a pH-dependent manner. A cell adhesion assay showed that HEK293 cells could readily adhere to the LG45 modules of α3-5 chains through a combination of SDCs and integrins. Moreover, α5LG45 modules bound to the E8 fragment, which includes the C-terminus of the laminin coiled-coil (LCC) domain and LG1-3 modules, but α2LG45 modules did not. The results suggested that although α5LG45 modules was fixed within the LG domain, α2LG45 modules was freely placed in the vicinity of LG1-3. Our findings provide information for investigation of the structural and functional diversity of basement membranes.
层粘连蛋白是基底膜中的一种异三聚体,由α、β 和 γ 链组成。五种α 链在其 C 端包含层粘连蛋白球形(LG)结构域,由五个串联模块(LG1-5 模块)组成。每个 LG45 模块通过柔性接头与 LG1-3 的紧凑三叶草形结构相连。尽管对 LG45 模块的积累研究表明,每个α 链在与碳水化合物链的结合和分子内相互作用方面存在差异,但这一点仍不清楚。在这项研究中,为了比较它们的功能,我们制备了人层粘连蛋白α1-5 链的 LG45 模块的重组蛋白。经过 matriglycan 修饰的 dystroglycan(DG)很容易与α1 和α2 链的 LG45 模块结合,但与其他α 链不结合。相反,肝素与除α2 以外的α 链的 LG45 模块结合。硫酸乙酰肝素/肝素连接的 syndecans(SDCs)与 LG45 模块的结合受其核心蛋白的影响。此外,α1 和α4LG45 模块以 pH 依赖性方式与 SDCs 结合。细胞黏附实验表明,HEK293 细胞可以通过 SDCs 和整合素的组合很容易地黏附在α3-5 链的 LG45 模块上。此外,α5LG45 模块与包括 laminin 卷曲螺旋(LCC)结构域和 LG1-3 模块 C 端的 E8 片段结合,但α2LG45 模块不结合。结果表明,尽管α5LG45 模块固定在 LG 结构域内,但α2LG45 模块自由放置在 LG1-3 附近。我们的研究结果为研究基底膜的结构和功能多样性提供了信息。