Sakai K, Fujii T, Hayashi T
Nippi Research Institute of Biomatrix, Tokyo, Japan.
J Biochem. 1994 Mar;115(3):415-21. doi: 10.1093/oxfordjournals.jbchem.a124353.
Purified plasma fibronectin in Tris-buffered saline aggregated on incubation at 37 degrees C in the presence of dithiothreitol without the presence of cells. On SDS polyacrylamide gel electrophoresis without reduction, dimeric fibronectin showed a 460 kDa band, while the protein band of aggregated fibronectin remained at the top of the running gel. The aggregate was a disulfide-bonded multimer, since both the dimeric and the multimeric fibronectins migrated as 230 kDa polypeptides after reduction. The multimer formation required SH reagent and proceeded faster with higher SH concentration, suggesting the occurrence of a disulfide exchange reaction during the aggregation. Since dimeric fibronectin with carboxymethylated sulfhydryl groups also formed multimers under the same condition, the free sulfhydryl groups of dimeric fibronectin may not be involved in the multimer formation, suggesting involvement of disulfide exchange from intramolecular bonds to intermolecular bonds. The multimerization was not influenced by Na+, Ca2+, or EDTA, while urea-treated fibronectin required a higher concentration of dithiothreitol for multimer formation. Fibronectin partially degraded by m-calpain did not form multimers. The multimeric fibronectin retained heparin-binding and cell attachment activities, but had lost gelatin-binding activity. Involvement of the terminal regions containing type I and type II repeats was suggested in the interaction of pFN leading to the multimerization.
在不含细胞的情况下,纯化的血浆纤连蛋白在含有二硫苏糖醇的Tris缓冲盐溶液中于37℃孵育时会发生聚集。在非还原条件下进行的SDS聚丙烯酰胺凝胶电泳中,二聚体纤连蛋白显示出一条460 kDa的条带,而聚集的纤连蛋白的蛋白条带则保留在电泳凝胶的顶部。该聚集体是一种通过二硫键连接的多聚体,因为还原后二聚体和多聚体纤连蛋白均以230 kDa的多肽形式迁移。多聚体的形成需要巯基试剂,并且在较高的巯基浓度下进行得更快,这表明聚集过程中发生了二硫键交换反应。由于具有羧甲基化巯基的二聚体纤连蛋白在相同条件下也会形成多聚体,因此二聚体纤连蛋白的游离巯基可能不参与多聚体的形成,这表明存在从分子内键到分子间键的二硫键交换。多聚化不受Na +、Ca2 +或EDTA的影响,而经尿素处理的纤连蛋白形成多聚体需要更高浓度的二硫苏糖醇。被m-钙蛋白酶部分降解的纤连蛋白不会形成多聚体。多聚体纤连蛋白保留了肝素结合和细胞附着活性,但失去了明胶结合活性。提示包含I型和II型重复序列的末端区域参与了导致多聚化的纤连蛋白原(pFN)的相互作用。