首页> 美国卫生研究院文献>Biochemical Journal >Very-high-field n.m.r. studies of bovine lung heparan sulphate tetrasaccharides produced by nitrous acid deaminative cleavage. Determination of saccharide sequence uronate composition and degrees of sulphation.
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Very-high-field n.m.r. studies of bovine lung heparan sulphate tetrasaccharides produced by nitrous acid deaminative cleavage. Determination of saccharide sequence uronate composition and degrees of sulphation.

机译:极高场n.m.r.亚硝酸脱氨裂解产生的牛肺硫酸乙酰肝素四糖的研究。测定糖的序列尿酸盐的组成和硫酸化程度。

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摘要

Tetrasaccharides with the general structure UA-GlcNAc-GlcUA-aManOH (where UA represents uronate, GlcNAc N-acetylglucosamine, GlcUA glucuronate and aManOH anhydromannitol) were prepared from low-sulphated heparan sulphates of bovine lung origin by complete nitrous acid deaminative cleavage followed by reduction and fractionated by gel filtration. Ion-exchange chromatography of the tetrasaccharides yielded three major fractions in approximate yields of 37%, 45% and 14%. These were shown to be non-, mono- and di-sulphated respectively. Complete structural characterization of the tetrasaccharide fractions by quantitative high-field n.m.r. spectroscopy showed that each fraction contained only two discrete species and led to the following observations. (1) All of the uronate residues in the tetrasaccharides (and in larger oligosaccharides) are unsulphated, and hence sulphated iduronate [IdUA(2SO3)] must occur exclusively within -GlcNSO3-IdUA(2SO3)-GlcNSO3- sequences (where GlcNSO3 represents N-sulpho-glucosamine) in the parent polymers. (2) The GlcNAc residues in the tetrasaccharides are more highly C-6-O-sulphated than are the aManOH residues, and furthermore sulphation on the aManOH appears to occur only where the GlcNAc is also sulphated. (3) Where the GlcNAc is C-6-O-sulphated, iduronate is the major non-reducing terminal residue, whereas glucuronate predominates in this position if the GlcNAc is unsulphated. The quantitative data obtained are used to determine the degree of C-6-O-sulphation of glucosamine residues in specific sequences within the parent heparan sulphates.
机译:具有一般结构的UA-GlcNAc-GlcUA-aManOH(其中UA代表尿酸盐,GlcNAc N-乙酰氨基葡萄糖,GlcUA葡萄糖醛酸盐和aManOH脱水甘露糖醇)的四糖由牛血清来源的低硫酸乙酰肝素经完全亚硝酸脱氨裂解后还原而制得并通过凝胶过滤分离。四糖的离子交换色谱法得到三个主要馏分,产率约为37%,45%和14%。它们分别被证明是非硫酸盐,一硫酸盐和二硫酸盐。通过定量高场n.m.r对四糖部分进行完整的结构表征。光谱学表明,每个级分仅包含两个离散的物种,并导致以下观察。 (1)四糖(和较大的寡糖)中的所有尿酸盐残基均未硫酸化,因此硫酸化的异氰酸酯[IdUA(2SO3)]必须排在-GlcNSO3-IdUA(2SO3)-GlcNSO3-序列(其中GlcNSO3代表N -磺基葡糖胺)。 (2)与aManOH残基相比,四糖中的GlcNAc残基的C-6-O-硫酸化程度更高,此外,仅在GlcNAc也被硫酸化的情况下,aManOH上的硫酸化似乎发生。 (3)当GlcNAc被C-6-O硫酸化时,异氰酸酯是主要的非还原性末端残基,而如果GlcNAc不被硫酸化,则葡萄糖醛酸在该位置占主导。获得的定量数据用于确定母体硫酸乙酰肝素中特定序列中的氨基葡萄糖残基的C-6-O-硫酸化程度。

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