Dziadek M
Institute of Reproduction and Development, Monash Medical Centre, Clayton, Victoria, Australia.
Experientia. 1995 Sep 29;51(9-10):901-13. doi: 10.1007/BF01921740.
Laminin and nidogen (entactin) are major glycoprotein components of basement membranes. At least seven different isoforms of laminin have been identified. Laminin and nidogen form high affinity complexes in basement membranes by specific binding between the laminin gamma 1 chain and the G3 globule of nidogen. Additional interactions between nidogen and collagen IV, perlecan and other basement membrane components result in the formation of ternary complexes between these matrix components. Nidogen is highly susceptible to proteolytic cleavage, and binding to laminin protects nidogen from degradation. Nidogen is considered to have a crucial role as a link protein in the assembly of basement membranes. Basement membrane components are synthesized at high levels during tissue growth and development, and sites of morphogenesis correlate with localized remodelling of basement membranes. The formation of distinct basement membrane matrices in the developing embryo is influenced by the laminin isoforms produced and by whether laminin and nidogen are co-expressed and secreted as a complex or are produced by cooperation between two cell layers. The potential roles of laminin-nidogen complexes, cell-matrix interactions, and other intermolecular interactions within the matrix in basement membrane assembly and stability are discussed in this review.
层粘连蛋白和巢蛋白(内动蛋白)是基底膜的主要糖蛋白成分。已鉴定出至少七种不同的层粘连蛋白异构体。层粘连蛋白和巢蛋白通过层粘连蛋白γ1链与巢蛋白的G3结构域之间的特异性结合在基底膜中形成高亲和力复合物。巢蛋白与IV型胶原、基底膜聚糖及其他基底膜成分之间的额外相互作用导致这些基质成分之间形成三元复合物。巢蛋白极易被蛋白水解切割,而与层粘连蛋白结合可保护巢蛋白不被降解。巢蛋白被认为在基底膜组装过程中作为连接蛋白发挥关键作用。在组织生长和发育过程中,基底膜成分大量合成,形态发生部位与基底膜的局部重塑相关。发育中的胚胎中不同基底膜基质的形成受所产生的层粘连蛋白异构体以及层粘连蛋白和巢蛋白是作为复合物共同表达和分泌还是由两个细胞层合作产生的影响。本文综述了层粘连蛋白-巢蛋白复合物、细胞-基质相互作用以及基质内其他分子间相互作用在基底膜组装和稳定性中的潜在作用。
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