Gambarini A G, Miyamoto C A, Lima G A, Nader H B, Dietrich C P
Departamento de Bioquímica, Universidade de São Paulo, Brazil.
Mol Cell Biochem. 1993 Jul 21;124(2):121-9. doi: 10.1007/BF00929204.
The mitogenic activity of acidic fibroblast growth factor (aFGF) is potentiated by the highly sulfated hexasaccharide [IdoUA,2S-GlcNS,6S]2-[GlcUA-GlcNS,6S] the structural repetitive unit of lung heparin chains. On a mass basis, the effect of both heparin and oligosaccharide are equivalent whereas on a molar basis, heparin, which contains about seven hexasaccharide repeats, is more efficient. On the other hand, a pentasulfated tetrasaccharide or di- and tri-sulfated disaccharides are much less effective in potentiating aFGF activity than the hexasaccharide. If the growth factor is pre-incubated with the hexasaccharide at pH 7.2 and then exposed to pH 3.5 the 306/345 nm fluorescence ratio is similar to that of native aFGF indicating that the oligosaccharide stabilizes a native conformation of the protein. Heparan sulfates extracted from various mammalian tissues were also able to potentiate aFGF mitogenic activity. On a mass basis they were in general less efficient than heparin; however, heparan sulfate prepared from medium conditioned by 3T3 fibroblasts is more efficient than heparin both on a mass and molar basis. A highly sulfated oligosaccharide isolated after digestion of pancreas heparan sulfate with heparitinase I is more active than the intact molecule, reaching a potentiating effect equivalent to that of lung heparin, whereas an N-acetylated oligosaccharide isolated after nitrous acid degradation is inactive. These data suggest that the mitogenic activity of aFGF is primarily potentiated by interacting with highly sulfated regions of heparan sulfates chains.
酸性成纤维细胞生长因子(aFGF)的促有丝分裂活性可被高度硫酸化的六糖[艾杜糖醛酸,2S-葡糖胺,6S]2-[葡糖醛酸-葡糖胺,6S](肺肝素链的结构重复单元)增强。以质量计,肝素和寡糖的作用相当,而以摩尔计,含有约七个六糖重复单元的肝素更有效。另一方面,五硫酸化四糖或二硫酸化和三硫酸化二糖在增强aFGF活性方面比六糖的效果要差得多。如果生长因子在pH 7.2下与六糖预孵育,然后暴露于pH 3.5,306/345nm荧光比值与天然aFGF相似,表明寡糖稳定了蛋白质的天然构象。从各种哺乳动物组织中提取的硫酸乙酰肝素也能够增强aFGF的促有丝分裂活性。以质量计,它们通常不如肝素有效;然而,由3T3成纤维细胞条件培养基制备的硫酸乙酰肝素在质量和摩尔基础上都比肝素更有效。用肝素酶I消化胰腺硫酸乙酰肝素后分离得到的高度硫酸化寡糖比完整分子更具活性,其增强效果与肺肝素相当,而亚硝酸降解后分离得到的N-乙酰化寡糖则无活性。这些数据表明,aFGF的促有丝分裂活性主要通过与硫酸乙酰肝素链的高度硫酸化区域相互作用而增强。