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从牛巩膜中分离并鉴定硫酸皮肤素蛋白聚糖

Isolation and characterization of dermatan sulphate proteoglycans from bovine sclera.

作者信息

Cöster L, Fransson L A

出版信息

Biochem J. 1981 Jan 1;193(1):143-53. doi: 10.1042/bj1930143.

Abstract
  1. Proteoglycans were extracted from sclera with 4 M-guanidine hydrochloride in the presence of proteinase inhibitors and purified by ion-exchange chromatography and density-gradient centrifugation. 2. The entire proteoglycan pool was characterized by compositional analyses and by specific chemical (periodate oxidation) and enzymic (chondroitinases) degradations. The glycan moieties of the molecules were exclusively galactosaminoglycans (dermatan sulphate-chondroitin sulphate co-polymers). In addition, the preparations contained small amounts of oligosaccharides. 3. The scleral proteodermatan sulphates were fractionated into one larger (I) and one smaller (II) component by gel chromatography. Proteoglycan I was eluted in a more excluded position on gel chromatography in 0.5 M-sodium acetate than in 4.0 M-guanidine hydrochloride. Reduced and alkylated proteoglycan I was eluted in the same position (in 0.5 M-sodium acetate) as was the starting material (in 4.0 M-guanidine hydrochloride). The elution position of proteoglycan II was the same in both solvents. Proteoglycans I and II had s0 20,w values of 2.8 x 10(-13) and 2.2 x 10(-13) s respectively in 6.0 M-guanidine hydrochloride. 4. The two proteoglycans differed with respect to the nature of the protein core and the co-polymeric structure of their side chains. Also proteoglycan I contained more side chains than did proteoglycan II. The dermatan sulphate side chains of proteoglycan I were D-glucuronic acid-rich (80%), whereas those of proteoglycan II contained equal amounts of D-glucuronic acid and L-iduronic acid. Furthermore, the co-polymeric features of the side chains of proteoglycans I and II were different. The protein core of proteoglycan I was of larger size than that of proteoglycan II. The latter had an apparent molecular weight of 46 000 (estimated by sodium dodecyl sulphate/polyacrylamide-gel electrophoresis), whereas the former was greater than 100 000. In addition, the amino-acid composition of the two core preparations was different. 5. As proteoglycan I altered its elution position on gel chromatography in 4 M-guanidine hydrochloride compared with 0.5 M-sodium acetate it is proposed that a change in conformation or a disaggregation took place. If the latter hypothesis is favoured, aggregation may be due to self-association or mediated by an extrinsic molecule, e.g. hyaluronic acid.
摘要
  1. 在蛋白酶抑制剂存在的情况下,用4M盐酸胍从巩膜中提取蛋白聚糖,并通过离子交换色谱法和密度梯度离心法进行纯化。2. 整个蛋白聚糖库通过成分分析、特定化学(高碘酸盐氧化)和酶促(软骨素酶)降解进行表征。分子的聚糖部分仅为半乳糖胺聚糖(硫酸皮肤素 - 硫酸软骨素共聚物)。此外,制剂中还含有少量寡糖。3. 通过凝胶色谱法将巩膜硫酸皮肤素蛋白聚糖分离为一个较大的组分(I)和一个较小的组分(II)。在0.5M醋酸钠中,蛋白聚糖I在凝胶色谱上的洗脱位置比在4.0M盐酸胍中更偏向排阻位置。还原和烷基化的蛋白聚糖I在与起始材料(在4.0M盐酸胍中)相同的位置(在0.5M醋酸钠中)洗脱。蛋白聚糖II在两种溶剂中的洗脱位置相同。在6.0M盐酸胍中,蛋白聚糖I和II的s0 20,w值分别为2.8×10(-13)和2.2×10(-13) s。4. 两种蛋白聚糖在蛋白核心的性质和其侧链的共聚结构方面存在差异。此外,蛋白聚糖I比蛋白聚糖II含有更多的侧链。蛋白聚糖I的硫酸皮肤素侧链富含D - 葡萄糖醛酸(80%),而蛋白聚糖II的侧链含有等量的D - 葡萄糖醛酸和L - 艾杜糖醛酸。此外,蛋白聚糖I和II侧链的共聚特征也不同。蛋白聚糖I的蛋白核心比蛋白聚糖II的大。后者的表观分子量为46000(通过十二烷基硫酸钠/聚丙烯酰胺凝胶电泳估计),而前者大于100000。此外,两种核心制剂的氨基酸组成也不同。5. 由于蛋白聚糖I在4M盐酸胍中与0.5M醋酸钠相比在凝胶色谱上改变了其洗脱位置,因此推测发生了构象变化或解聚。如果支持后一种假设,聚集可能是由于自缔合或由外部分子介导,例如透明质酸。

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