Pickford A R, Potts J R, Bright J R, Phan I, Campbell I D
Oxford Centre for Molecular Sciences Department of Biochemistry South Parks Road, Oxford, OX1 3QU, UK.
Structure. 1997 Mar 15;5(3):359-70. doi: 10.1016/s0969-2126(97)00193-7.
Fibronectin is an extracellular matrix glycoprotein involved in cell adhesion and migration events in a range of important physiological processes. Aberrant adhesion of cells to the matrix may contribute to the breakdown of normal tissue function associated with various diseases. The adhesive properties of fibronectin may be mediated by its interaction with collagen, the most abundant extracellular matrix protein. The collagen-binding activity of fibronectin has been localized to a 42 kDa proteolytic fragment on the basis of this fragment's affinity for denatured collagen (gelatin). This gelatin-binding domain contains the only type 2 (F2) modules found in the protein. The F2 modules of the matrix metalloproteinases MMP2 and MMP9 are responsible for the affinity of these proteins for gelatin. Knowledge of the structure of fibronectin will provide insights into its interactions with other proteins, and will contribute to our understanding of the structure and function of the extracellular matrix, in both normal and disease-altered tissues.
We have determined the solution structure of the first F2 (1F2) module from human fibronectin by two-dimensional NMR spectroscopy. The tertiary structure of the 1F2 module is similar to that of a shorter F2 module, PDC-109b, from the bovine seminal plasma protein PDC-109. The 1F2 module has two double-stranded antiparallel beta sheets oriented approximately perpendicular to each other, and enclosing a cluster of highly conserved aromatic residues, five of which form a solvent-exposed hydrophobic surface. The N-terminal extension in 1F2 brings the N and C termini of the module into close proximity.
The close proximity of the N and C termini in 1F2 allows for interactions between non-contiguous modules in the gelatin-binding domain. Thus, instead of forming an extended, linear chain of modules, the domain may have a more compact, globular structure. A pocket in the module's solvent-exposed hydrophobic surface may bind nonpolar residues in the putative fibronectin-binding site of the extracellular matrix component type I collagen.
纤连蛋白是一种细胞外基质糖蛋白,参与一系列重要生理过程中的细胞黏附和迁移事件。细胞与基质的异常黏附可能导致与各种疾病相关的正常组织功能破坏。纤连蛋白的黏附特性可能由其与胶原蛋白(最丰富的细胞外基质蛋白)的相互作用介导。基于该片段对变性胶原蛋白(明胶)的亲和力,纤连蛋白的胶原结合活性已定位到一个42 kDa的蛋白水解片段。这个明胶结合结构域包含该蛋白中唯一发现的2型(F2)模块。基质金属蛋白酶MMP2和MMP9的F2模块负责这些蛋白对明胶的亲和力。了解纤连蛋白的结构将有助于深入了解其与其他蛋白的相互作用,并有助于我们理解正常和疾病改变组织中细胞外基质的结构和功能。
我们通过二维核磁共振光谱法确定了人纤连蛋白首个F2(1F2)模块的溶液结构。1F2模块的三级结构与牛精浆蛋白PDC - 109中较短的F2模块PDC - 109b相似。1F2模块有两个大致相互垂直的双链反平行β折叠片层,包围着一组高度保守的芳香族残基,其中五个形成一个溶剂暴露的疏水表面。1F2中的N端延伸使模块的N端和C端靠近。
1F2中N端和C端的靠近允许明胶结合结构域中不连续模块之间的相互作用。因此,该结构域可能具有更紧凑的球状结构,而不是形成一个延伸的线性模块链。模块溶剂暴露疏水表面的一个口袋可能结合细胞外基质成分I型胶原蛋白假定的纤连蛋白结合位点中的非极性残基。