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通过带选择性同核去耦二维(1)H NMR 测定肝素衍生寡糖的一级结构和羧酸 pk(A)值。

Determination of the primary structure and carboxyl pK (A)s of heparin-derived oligosaccharides by band-selective homonuclear-decoupled two-dimensional (1)H NMR.

机构信息

Department of Chemistry, University of California, Riverside, CA 92521, USA.

出版信息

Anal Bioanal Chem. 2011 Jan;399(2):663-71. doi: 10.1007/s00216-010-4224-4. Epub 2010 Oct 3.

Abstract

Determination of the structure of heparin-derived oligosaccharides by (1)H NMR is challenging because resonances for all but the anomeric protons cover less than 2 ppm. By taking advantage of increased dispersion of resonances for the anomeric H(1) protons at low pD and the superior resolution of band-selective, homonuclear-decoupled (BASHD) two-dimensional (1)H NMR, the primary structure of the heparin-derived octasaccharide ∆UA(2S)-(1 → 4)-GlcNS(6S)-(1 → 4)-IdoA(2S)--(1 → 4)-GlcNS(6S) has been determined, where ∆UA(2S) is 2-O-sulfated ∆(4,5)-unsaturated uronic acid, GlcNS(6S) is 6-O-sulfated, N-sulfated β-D: -glucosamine and IdoA(2S) is 2-O-sulfated α-L: -iduronic acid. The spectrum was assigned, and the sites of N- and O-sulfation and the conformation of each uronic acid residue were established, with chemical shift data obtained from BASHD-TOCSY spectra, while the sequence of the monosaccharide residues in the octasaccharide was determined from inter-residue NOEs in BASHD-NOESY spectra. Acid dissociation constants were determined for each carboxylic acid group of the octasaccharide, as well as for related tetra- and hexasaccharides, from chemical shift-pD titration curves. Chemical shift-pD titration curves were obtained for each carboxylic acid group from sub-spectra taken from BASHD-TOCSY spectra that were measured as a function of pD. The pK (A)s of the carboxylic acid groups of the ∆UA(2S) residues are less than those of the IdoA(2S) residues, and the pK (A)s of the carboxylic acid groups of the IdoA(2S) residues for a given oligosaccharide are similar in magnitude. Relative acidities of the carboxylic acid groups of each oligosaccharide were calculated from chemical shift data by a pH-independent method.

摘要

用(1)H NMR 确定肝素衍生寡糖的结构具有挑战性,因为除了端基氢质子之外,所有质子的共振峰覆盖不到 2ppm。通过利用低 pH 值下端基氢质子(1)H 质子的共振峰展宽以及带选择、同核去耦(BASHD)二维(1)H NMR 的优异分辨率,可以确定肝素衍生八糖 ∆UA(2S)-(1 ⁇ 4)-GlcNS(6S)-(1 ⁇ 4)-IdoA(2S)--(1 ⁇ 4)-GlcNS(6S)的一级结构,其中 ∆UA(2S) 是 2-O-磺酸化的 ∆(4,5)-不饱和糖醛酸,GlcNS(6S) 是 6-O-磺酸化、N-磺酸化的 β-D: -葡萄糖胺,IdoA(2S) 是 2-O-磺酸化的 α-L: -艾杜糖醛酸。对谱图进行了归属,并通过 BASHD-TOCSY 谱确定了 N-和 O-磺酸化的位置和每个糖醛酸残基的构象,同时从 BASHD-NOESY 谱中的残基间 NOE 确定了八糖中的单糖残基序列。通过化学位移-pD 滴定曲线确定了八糖中每个羧酸基团以及相关的四糖和六糖的离解常数。通过从 BASHD-TOCSY 谱中测量的与 pD 相关的子谱中获得每个羧酸基团的化学位移-pD 滴定曲线。从 BASHD-TOCSY 谱中获得的与 pD 相关的子谱中获得每个羧酸基团的化学位移-pD 滴定曲线。与 IdoA(2S) 残基相比,∆UA(2S) 残基的羧酸基团的 pK (A) 较小,并且给定寡糖中 IdoA(2S) 残基的羧酸基团的 pK (A) 具有相似的大小。通过 pH 无关方法从化学位移数据计算每个寡糖中羧酸基团的相对酸度。

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