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1
Distribution of sulphate and iduronic acid residues in heparin and heparan sulphate.硫酸根和艾杜糖醛酸残基在肝素和硫酸乙酰肝素中的分布。
Biochem J. 1974 Jan;137(1):33-43. doi: 10.1042/bj1370033.
2
Identification of N-sulphated disaccharide units in heparin-like polysaccharides.肝素样多糖中N-硫酸化二糖单元的鉴定
Biochem J. 1979 Apr 1;179(1):77-87. doi: 10.1042/bj1790077.
3
Identification of O-sulphate substituents on D-glucuronic acid units in heparin-related glycosaminoglycans using novel synthetic disaccharide standards.使用新型合成二糖标准物鉴定肝素相关糖胺聚糖中D-葡萄糖醛酸单元上的O-硫酸酯取代基
Glycobiology. 1995 Dec;5(8):807-11. doi: 10.1093/glycob/5.8.807.
4
Structural studies on heparan sulphate from human lung fibroblasts. Characterization of oligosaccharides obtained by selective periodate oxidation of D-glucuronic acid residues followed by scission in alkali.人肺成纤维细胞硫酸乙酰肝素的结构研究。对通过选择性高碘酸盐氧化D-葡萄糖醛酸残基然后在碱中裂解获得的寡糖的表征。
Biochem J. 1980 Oct 1;191(1):103-10. doi: 10.1042/bj1910103.
5
Hydrazinolysis of heparin and other glycosaminoglycans.肝素及其他糖胺聚糖的肼解作用。
Biochem J. 1984 Jan 1;217(1):187-97. doi: 10.1042/bj2170187.
6
The acid lability of the glycosidic bonds of L-iduronic acid residues in glycosaminoglycans.糖胺聚糖中L-艾杜糖醛酸残基糖苷键的酸不稳定性。
Biochem J. 1980 Nov 1;191(2):355-63. doi: 10.1042/bj1910355.
7
Molecular distinctions between heparan sulphate and heparin. Analysis of sulphation patterns indicates that heparan sulphate and heparin are separate families of N-sulphated polysaccharides.硫酸乙酰肝素与肝素的分子差异。硫酸化模式分析表明,硫酸乙酰肝素和肝素是N - 硫酸化多糖的不同家族。
Biochem J. 1985 Sep 15;230(3):665-74. doi: 10.1042/bj2300665.
8
Biosynthesis of heparin. 3. Formation of iduronic acid residues.肝素的生物合成。3. 艾杜糖醛酸残基的形成。
J Biol Chem. 1974 Jun 25;249(12):3908-15.
9
The distribution of sulfated uronic acid and hexosamine residues in heparin and heparan sulfate.硫酸化糖醛酸和己糖胺残基在肝素和硫酸乙酰肝素中的分布。
Connect Tissue Res. 1975;3(1):97-104. doi: 10.3109/03008207509152346.
10
Structural studies on heparan sulphates. Characterization of oligosaccharides; obtained by periodate oxidation and alkaline elimination.硫酸乙酰肝素的结构研究。低聚糖的表征;通过高碘酸盐氧化和碱消除获得。
Eur J Biochem. 1980 May;106(1):59-69.

引用本文的文献

1
Fibrinogen, riboflavin, and UVA to immobilize a corneal flap--molecular mechanisms.纤维蛋白原、核黄素和 UVA 固定角膜瓣的分子机制。
Invest Ophthalmol Vis Sci. 2012 Sep 6;53(10):5991-6003. doi: 10.1167/iovs.12-10201.
2
Improved hydrophilic interaction chromatography LC/MS of heparinoids using a chip with postcolumn makeup flow.使用带有柱后补流的芯片改善肝素类物质的亲水作用色谱 LC/MS 分析。
Anal Chem. 2010 Jan 15;82(2):516-22. doi: 10.1021/ac901706f.
3
Human platelet heparanase: purification, characterization and catalytic activity.人血小板乙酰肝素酶:纯化、特性鉴定及催化活性
Biochem J. 1998 Mar 15;330 ( Pt 3)(Pt 3):1341-50. doi: 10.1042/bj3301341.
4
Glycosaminoglycans and the regulation of blood coagulation.糖胺聚糖与血液凝固的调节
Biochem J. 1993 Jan 15;289 ( Pt 2)(Pt 2):313-30. doi: 10.1042/bj2890313.
5
Isolation and characterization of dermatan sulphate proteoglycan from human uterine cervix.人子宫颈硫酸皮肤素蛋白聚糖的分离与鉴定
Biochem J. 1983 Feb 1;209(2):497-503. doi: 10.1042/bj2090497.
6
The acid lability of the glycosidic bonds of L-iduronic acid residues in glycosaminoglycans.糖胺聚糖中L-艾杜糖醛酸残基糖苷键的酸不稳定性。
Biochem J. 1980 Nov 1;191(2):355-63. doi: 10.1042/bj1910355.
7
Polyacrylamide-gel electrophoresis and Alcian Blue staining of sulphated glycosaminoglycan oligosaccharides.硫酸化糖胺聚糖寡糖的聚丙烯酰胺凝胶电泳及阿尔新蓝染色
Biochem J. 1984 Aug 1;221(3):707-16. doi: 10.1042/bj2210707.
8
Crystallization of macromolecular heparin.大分子肝素的结晶
Biochem J. 1974 Oct;143(1):251-2. doi: 10.1042/bj1430251.
9
Distribution of iduronate 2-sulphate residues in heparan sulphate. Evidence for an ordered polymeric structure.艾杜糖醛酸2-硫酸酯残基在硫酸乙酰肝素中的分布。有序聚合物结构的证据。
Biochem J. 1991 Feb 1;273 ( Pt 3)(Pt 3):553-9. doi: 10.1042/bj2730553.
10
The chemical constitution of the proteoglycan of human intervertebral disc.人类椎间盘蛋白聚糖的化学组成。
Biochem J. 1976 Sep 1;157(3):753-63. doi: 10.1042/bj1570753.

本文引用的文献

1
A spectrophotometric method for the microdetermination of hexosamines.一种用于微量测定己糖胺的分光光度法。
J Biol Chem. 1950 Jun;184(2):517-22.
2
THE ROLE OF SERINE IN THE LINKAGE OF HEPARIN TO PROTEIN.丝氨酸在肝素与蛋白质连接中的作用。
J Biol Chem. 1965 Jul;240:2817-20.
3
THE ANALYSIS OF HEXURONIC ACIDS IN BIOLOGICAL MATERIALS BY GAS-LIQUID PARTITION CHROMATOGRAPHY.用气液分配色谱法分析生物材料中的己糖醛酸
Can J Biochem. 1965 May;43:573-84. doi: 10.1139/o65-067.
4
A modified uronic acid carbazole reaction.一种改良的糖醛酸咔唑反应。
Anal Biochem. 1962 Oct;4:330-4. doi: 10.1016/0003-2697(62)90095-7.
5
Determination of 2-deoxy-2-sulfoaminohexose content of mucopolysaccharides.黏多糖中2-脱氧-2-磺氨基己糖含量的测定
Arch Biochem Biophys. 1962 Dec;99:396-400. doi: 10.1016/0003-9861(62)90285-0.
6
The uronic acid of heparin.肝素的糖醛酸。
Biochem Biophys Res Commun. 1962 Feb 20;7:41-5. doi: 10.1016/0006-291x(62)90141-9.
7
Crystalline papain. I. Preparation, specificity, and activation.结晶木瓜蛋白酶。I. 制备、特异性及激活
J Biol Chem. 1954 Apr;207(2):515-31.
8
Further characterization of the heparin-protein linkage region.肝素-蛋白质连接区域的进一步特性分析。
Biochim Biophys Acta. 1966 Dec 28;130(2):368-82. doi: 10.1016/0304-4165(66)90233-9.
9
Analytical and preparative separation of acidic glycosaminoglycans by electrophoresis in barium acetate.在醋酸钡中通过电泳对酸性糖胺聚糖进行分析性和制备性分离。
Anal Biochem. 1968 Dec;26(3):439-44. doi: 10.1016/0003-2697(68)90205-4.
10
Identification of iduronic acid as the major sulfated uronic acid of heparin.确认艾杜糖醛酸是肝素的主要硫酸化糖醛酸。
J Biol Chem. 1971 Jan 10;246(1):74-82.

硫酸根和艾杜糖醛酸残基在肝素和硫酸乙酰肝素中的分布。

Distribution of sulphate and iduronic acid residues in heparin and heparan sulphate.

作者信息

Höök M, Lindahl U, Iverius P H

出版信息

Biochem J. 1974 Jan;137(1):33-43. doi: 10.1042/bj1370033.

DOI:10.1042/bj1370033
PMID:4206909
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC1166077/
Abstract
  1. A method was developed for determination of the uronic acid composition of heparin-like glycosaminoglycans. Polymers or oligosaccharides are degraded to monosaccharides by a combination of acid hydrolysis and deamination with HNO(2). The resulting uronic acid monosaccharides (accounting for about 70% of the uronic acid contents of the starting materials) are isolated and converted into the corresponding aldono-1,4-lactones, which are separated by g.l.c. The calculated ratios of glucuronic acid/iduronic acid are reproducible within 5%. 2. Samples of heparin from pig intestinal mucosa (molar ratio of sulphate/disaccharide unit, 2.40) and heparan sulphate from human aorta (sulphate/disaccharide ratio, 0.46) were subjected to uronic acid analysis. l-Iduronic acid constituted 77% and 19% respectively of the total uronic acid contents. 3. The correlation between the contents of sulphate and iduronic acid indicated by this finding also applied to the fractionated deamination products of the two polymers. The sulphated fragments varied in size from disaccharide to octasaccharide (or larger) and showed sulphate/disaccharide molar ratios in the range of 0.05-2.0. The proportion of iduronic acid increased with increasing ester sulphate contents of the oligosaccharides. 4. Previous studies on the biosynthesis of heparin in a cell-free system have shown that l-iduronic acid residues are formed by C-5 epimerization of d-glucuronic acid units at the polymer level; the process requires concomitant sulphation of the polymer. The results obtained in the present structural study conform to these findings, and suggest further that similar mechanisms may operate in the biosynthesis of heparan sulphate. The epimerization reaction appears to be linked to the sulphation of hydroxyl groups but does not seem to require sulphation of the target uronic acid residues. The significance of sulphamino groups in relation to the formation of iduronic acid is unknown.
摘要
  1. 开发了一种用于测定类肝素糖胺聚糖中糖醛酸组成的方法。通过酸水解和用HNO₂脱氨的组合,将聚合物或寡糖降解为单糖。分离得到的糖醛酸单糖(约占起始原料中糖醛酸含量的70%)并转化为相应的醛糖-1,4-内酯,通过气相色谱法进行分离。计算得到的葡萄糖醛酸/艾杜糖醛酸比率的重现性在5%以内。2. 对来自猪肠黏膜的肝素样品(硫酸盐/二糖单位的摩尔比为2.40)和来自人主动脉的硫酸乙酰肝素(硫酸盐/二糖比率为0.46)进行了糖醛酸分析。艾杜糖醛酸分别占总糖醛酸含量的77%和19%。3. 这一发现所表明的硫酸盐和艾杜糖醛酸含量之间的相关性也适用于这两种聚合物的分级脱氨产物。硫酸化片段的大小从二糖到八糖(或更大)不等,硫酸盐/二糖摩尔比在0.05 - 2.0范围内。随着寡糖硫酸酯含量的增加,艾杜糖醛酸的比例增加。4. 先前在无细胞系统中对肝素生物合成的研究表明,艾杜糖醛酸残基是由聚合物水平上的d-葡萄糖醛酸单元的C-5差向异构化形成的;该过程需要聚合物同时硫酸化。本结构研究中获得的结果符合这些发现,并进一步表明类似的机制可能在硫酸乙酰肝素的生物合成中起作用。差向异构化反应似乎与羟基的硫酸化有关,但似乎不需要目标糖醛酸残基的硫酸化。氨基磺酸基团与艾杜糖醛酸形成的关系尚不清楚。