Parthasarathy N, Goldberg I J, Sivaram P, Mulloy B, Flory D M, Wagner W D
Department of Comparative Medicine, Bowman Gray School of Medicine of Wake Forest University, Winston-Salem, North Carolina 27157-1040.
J Biol Chem. 1994 Sep 2;269(35):22391-6.
Lipoprotein lipase (LpL) catalyzes the hydrolysis of triglycerides in plasma lipoproteins at the luminal surface of the vascular endothelium. This enzyme is bound via electrostatic interactions to heparan sulfate (HS). The specific endothelial cell surface HS oligosaccharide sequences that are necessary for binding of LpL to HS have not been characterized. To identify this LpL-binding oligosaccharide sequence, oligosaccharides were isolated from bovine aortic endothelial cell-derived HS and assessed for LpL binding properties. Endothelial HS chains that were isolated from endothelial total cell-associated proteoglycans were deacetylated by complete hydrazinolysis, cleaved with nitrous acid (pH 4.5), and reduced with [3H]NaBH4. The resulting fragments composed of N-sulfated glucosamine-rich oligosaccharides terminating with [3H]2,5-anhydromannitol (AManR) were chromatographed on a LpL-Sepharose column. A high affinity decasaccharide was isolated and characterized. Disaccharide analysis of this decasaccharide indicated that it yielded only the disaccharide IdceA(2-SO4)-->AManR(6-SO4) on treatment with nitrous acid at low pH. Therefore, the sequence of the LpL-binding decasaccharide is [IdceA(2-SO4) alpha 1-4GlcNSO4(6-S0(4)) alpha 1-4]4-IdceA(2-SO4) alpha 1-4AManR(6-SO4) and is distinct from those that bind antithrombin and basic fibroblast growth factor. Partial depolymerization of endothelial HS chains with hydrazine/high pH nitrous acid treatment gave rise to lipase-binding oligosaccharides larger than decasaccharide. However, further complete depolymerization of these oligosaccharides resulted in only a high affinity decasaccharide composed of repeating disaccharide units of [IdceA(2-SO4) alpha 1-4GlcNSO4(6-S0(4))]. These results indicate that the decasaccharide is the active fragment that binds to LpL with high affinity. Molecular modeling studies of the decasaccharide indicate that it presents a linear array of negatively charged sulfate groups that may adopt a favorable disposition to bind to peptide region(s) comprised of basic amino acid residues of LpL with high affinity.
脂蛋白脂肪酶(LpL)催化血管内皮腔表面血浆脂蛋白中甘油三酯的水解。该酶通过静电相互作用与硫酸乙酰肝素(HS)结合。LpL与HS结合所必需的特定内皮细胞表面HS寡糖序列尚未得到表征。为了鉴定这种LpL结合寡糖序列,从牛主动脉内皮细胞衍生的HS中分离出寡糖,并评估其LpL结合特性。从内皮细胞总相关蛋白聚糖中分离出的内皮HS链通过完全肼解进行脱乙酰化,用亚硝酸(pH 4.5)裂解,并用[3H]硼氢化钠还原。所得由富含N-硫酸化葡糖胺的寡糖组成的片段,以[3H]2,5-脱水甘露糖醇(AManR)结尾,在LpL-琼脂糖柱上进行色谱分析。分离并鉴定出一种高亲和力的十糖。对该十糖的二糖分析表明,在低pH下用亚硝酸处理时,它仅产生二糖IdceA(2-SO4)-->AManR(6-SO4)。因此,LpL结合十糖的序列为[IdceA(2-SO4)α1-4GlcNSO4(6-S0(4))α1-4]4-IdceA(2-SO4)α1-4AManR(6-SO4),与结合抗凝血酶和碱性成纤维细胞生长因子的序列不同。用肼/高pH亚硝酸处理对内皮HS链进行部分解聚,产生了大于十糖的脂肪酶结合寡糖。然而,这些寡糖的进一步完全解聚仅产生了一种由[IdceA(2-SO4)α1-4GlcNSO4(6-S0(4))]重复二糖单元组成的高亲和力十糖。这些结果表明,该十糖是与LpL高亲和力结合的活性片段。对该十糖的分子模拟研究表明,它呈现出线性排列的带负电荷的硫酸基团,这些基团可能以有利的方式与由LpL碱性氨基酸残基组成的肽区域高亲和力结合。