Smirnov Sergei P, McDearmon Erin L, Li Shaohua, Ervasti James M, Tryggvason Karl, Yurchenco Peter D
Department of Pathology & Laboratory Medicine, Robert Wood Johnson Medical School, Piscataway, New Jersey 08854, USA.
J Biol Chem. 2002 May 24;277(21):18928-37. doi: 10.1074/jbc.M201880200. Epub 2002 Mar 8.
The alpha2-laminin subunit contributes to basement membrane functions in muscle, nerve, and other tissues, and mutations in its gene are causes of congenital muscular dystrophy. The alpha2 G-domain modules, mutated in several of these disorders, are thought to mediate different cellular interactions. To analyze these contributions, we expressed recombinant laminin-2 (alpha(2)beta(1)gamma(1)) with LG4-5, LG1-3, and LG1-5 modular deletions. Wild-type and LG4-5 deleted-laminins were isolated from medium intact and cleaved within LG3 by a furin-like convertase. Myoblasts adhered predominantly through LG1-3 while alpha-dystroglycan bound to both LG1-3 and LG4-5. Recombinant laminin stimulated acetylcholine receptor (AChR) clustering; however, clustering was induced only by the proteolytic processed form, even in the absence of LG4-5. Furthermore, clustering required alpha(6)beta(1) integrin and alpha-dystroglycan binding activities available on LG1-3, acting in concert with laminin polymerization. The ability of the modified laminins to mediate basement membrane assembly was also evaluated in embryoid bodies where it was found that both LG1-3 and LG4-5, but not processing, were required. In conclusion, there is a division of labor among LG-modules in which (i) LG4-5 is required for basement membrane assembly but not for AChR clustering, and (ii) laminin-induced AChR clustering requires furin cleavage of LG3 as well as alpha-dystroglycan and alpha(6)beta(1) integrin binding.
α2-层粘连蛋白亚基对肌肉、神经和其他组织的基底膜功能有贡献,其基因突变是先天性肌营养不良的病因。在其中几种疾病中发生突变的α2 G结构域模块被认为介导不同的细胞相互作用。为了分析这些作用,我们表达了具有LG4-5、LG1-3和LG1-5模块缺失的重组层粘连蛋白-2(α(2)β(1)γ(1))。野生型和LG4-5缺失的层粘连蛋白从培养基中完整分离,并被一种弗林蛋白酶样转化酶在LG3内切割。成肌细胞主要通过LG1-3黏附,而α-肌营养不良聚糖与LG1-3和LG4-5都结合。重组层粘连蛋白刺激乙酰胆碱受体(AChR)聚集;然而,即使在没有LG4-5的情况下,聚集也仅由蛋白水解加工形式诱导。此外,聚集需要LG1-3上可用的α(6)β(1)整合素和α-肌营养不良聚糖结合活性,与层粘连蛋白聚合协同作用。还在胚状体中评估了修饰层粘连蛋白介导基底膜组装的能力,发现LG1-3和LG4-5都是必需的,但加工不是必需的。总之,LG模块之间存在分工,其中(i)基底膜组装需要LG4-5,但AChR聚集不需要;(ii)层粘连蛋白诱导的AChR聚集需要LG3的弗林蛋白酶切割以及α-肌营养不良聚糖和α(6)β(1)整合素结合。