Godyna S, Mann D M, Argraves W S
Biochemistry Department, J.H. Holland Laboratory, American Red Cross, Rockville, Maryland, USA.
Matrix Biol. 1995 Feb;14(6):467-77. doi: 10.1016/0945-053x(95)90004-7.
Fibulin-1 is an extracellular matrix glycoprotein found in both loose and dense connective tissues, elastic fibers and some basement membranes. Cultured cells such as fibroblasts assemble endogenously synthesized or exogenously added fibulin-1 into matrix fibrils that also contain fibronectin. Since we have previously shown that fibulin-1 binds to fibronectin (Balbona, K., Tran, H., Godyna, S., Ingham, K. C., Strickland, D. K. and Argraves, W. S. J. Biol. Chem. 267: 20120-20125, 1992), we sought to investigate fibulin-1 incorporation into fibroblast extracellular matrix with an emphasis on evaluating the potential role of fibronectin in the process. In this study, we have used quantitative assays to measure the binding of 125I-fibulin to monolayers of cultured fibroblasts. Our results show that the kinetics of fibulin-1 incorporation into the cell layer and its partitioning into detergent-soluble and -insoluble fractions were similar to those of fibronectin. It was found that antibodies to fibronectin or to the fibulin-1-binding domain of fibronectin-inhibited fibulin-1 incorporation. Cell lines that fail to assemble fibronectin into the matrix, such as HT1080 or PFHR-9, do not incorporate fibulin-1 into their cell layers. However, when HT1080 cells were induced to assemble fibronectin by treatment with dexamethasone, they subsequently acquired the ability to incorporate fibulin-1. Moreover, treatment of cultured fibroblasts with antibodies that inhibit fibronectin assembly significantly inhibit fibulin-1 incorporation into the matrix. When increased amounts of fibronectin were incorporated into cells layers by incubating the cells for varying lengths of time with exogenous fibronectin, a corresponding increase in fibulin-1 incorporation was also observed. Taken together, the data indicate that the incorporation of fibulin-1 requires fibronectin assembly and suggests a dependence on the amount of fibronectin in a matrix. These results highlight the potential of fibronectin to control the deposition of fibulin-1 into those extracellular matrices where both proteins coincide and may have implications in the formation of fibulin-1-containing matrix structures such as basement membranes or elastic fibers.
纤连蛋白-1是一种细胞外基质糖蛋白,存在于疏松和致密结缔组织、弹性纤维及一些基底膜中。培养的细胞,如成纤维细胞,会将内源性合成或外源性添加的纤连蛋白-1组装成也含有纤连蛋白的基质原纤维。由于我们之前已表明纤连蛋白-1与纤连蛋白结合(Balbona, K., Tran, H., Godyna, S., Ingham, K. C., Strickland, D. K.和Argraves, W. S.《生物化学杂志》267: 20120 - 20125, 1992),我们试图研究纤连蛋白-1掺入成纤维细胞外基质的情况,重点是评估纤连蛋白在此过程中的潜在作用。在本研究中,我们使用定量分析方法来测量¹²⁵I - 纤连蛋白与培养的成纤维细胞单层的结合。我们的结果表明,纤连蛋白-1掺入细胞层及其分配到去污剂可溶和不可溶部分的动力学与纤连蛋白相似。发现抗纤连蛋白或抗纤连蛋白纤连蛋白-1结合结构域的抗体可抑制纤连蛋白-1的掺入。无法将纤连蛋白组装到基质中的细胞系,如HT1080或PFHR - 9,不会将纤连蛋白-1掺入其细胞层。然而,当用 dexamethasone处理HT1080细胞以诱导其组装纤连蛋白时,它们随后获得了掺入纤连蛋白-1的能力。此外,用抑制纤连蛋白组装的抗体处理培养的成纤维细胞会显著抑制纤连蛋白-1掺入基质。当通过用外源性纤连蛋白孵育细胞不同时间将更多量的纤连蛋白掺入细胞层时,也观察到纤连蛋白-1掺入相应增加。综上所述,数据表明纤连蛋白-1的掺入需要纤连蛋白组装,并表明依赖于基质中纤连蛋白的量。这些结果突出了纤连蛋白控制纤连蛋白-1沉积到两种蛋白质共存的那些细胞外基质中的潜力,并且可能对含纤连蛋白-1的基质结构如基底膜或弹性纤维的形成有影响。