Mummery Rosemary S, Mulloy Barbara, Rider Christopher C
School of Biological Sciences, Royal Holloway University of London, Egham Hill, Egham, Surrey TW20 OEX, UK.
Glycobiology. 2007 Oct;17(10):1094-103. doi: 10.1093/glycob/cwm082. Epub 2007 Aug 2.
Recombinant human betacellulin binds strongly to heparin, requiring of the order of 0.8 M NaCl for its elution from a heparin affinity matrix. This is in complete contrast to the prototypic member of its cytokine superfamily, epidermal growth factor, which fails to bind to the column at physiological pH and strength. We used a well-established heparin binding ELISA to demonstrate that fucoidan and a highly sulfated variant of heparan sulfate compete strongly for heparin binding. Low sulfated heparan sulfates and also chondroitin sulfates are weaker competitors. Moreover, although competitive activity is reduced by selective desulfation, residual binding to extensively desulfated heparin remains. Even carboxyl reduction followed by extensive desulfation does not completely remove activity. We further demonstrate that both hyaluronic acid and the E. coli capsular polysaccharide K5, both of which are unsulfated polysaccharides with unbranched chains of alternating N-acetylglucosamine linked beta(1-4) to glucuronic acid, are also capable of a limited degree of competition with heparin. Heparin protects betacellulin from proteolysis by LysC, but K5 polysaccharide does not. Betacellulin possesses a prominent cluster of basic residues, which is likely to constitute a binding site for sulfated polysaccharides, but the binding of nonsulfated polysaccharides may take place at a different site.
重组人β-细胞素与肝素紧密结合,从肝素亲和基质上洗脱下来大约需要0.8M的氯化钠。这与其细胞因子超家族的原型成员表皮生长因子形成了鲜明对比,表皮生长因子在生理pH值和强度下无法与该柱结合。我们使用成熟的肝素结合酶联免疫吸附测定法来证明岩藻依聚糖和硫酸乙酰肝素的高度硫酸化变体对肝素结合具有强烈的竞争作用。低硫酸化的硫酸乙酰肝素以及硫酸软骨素是较弱的竞争者。此外,尽管选择性脱硫会降低竞争活性,但对广泛脱硫的肝素仍存在残留结合。即使进行羧基还原并随后广泛脱硫也不能完全消除活性。我们进一步证明,透明质酸和大肠杆菌荚膜多糖K5,这两种都是具有交替连接的N-乙酰葡糖胺β(1-4)至葡糖醛酸的无分支链的非硫酸化多糖,也能够与肝素进行有限程度的竞争。肝素可保护β-细胞素不被LysC蛋白水解,但K5多糖则不能。β-细胞素拥有一簇突出的碱性残基,这可能构成了与硫酸化多糖的结合位点,但非硫酸化多糖的结合可能发生在不同的位点。