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通过蛋白质 - 多糖复合物在超滤和色谱分析过程中的行为揭示正常人血浆中酸性糖胺聚糖与蛋白质之间相互作用的特征

Characteristics of the interactions between acid glycosaminoglycans and proteins in normal human plasma as revealed by the behaviour of the protein-polysaccharide complexes in ultrafiltration and chromatographic procedures.

作者信息

Calatroni A, Vinci R, Ferlazzo A M

机构信息

Istituto pluridisciplinare di Fisiologia Umana, University of Messina, Italy.

出版信息

Clin Chim Acta. 1992 Mar 31;206(3):167-80. doi: 10.1016/0009-8981(92)90086-6.

Abstract

Acid glycosaminoglycans were isolated from normal human plasma: (a) following fractionation of plasma (with protease inhibitors) on Sephadex G-200; (b) by ultrafiltration through membranes with retention of molecules above 50 kDa, with and without previous addition of NaCl, Triton X-100, urea, or guanidine HCl; (c) by filtering on Ecteola-cellulose either untreated plasma or after treatment with NaCl, urea, Triton X-100, papain or NaOH. More than 95% of plasma glycosaminoglycans interact with plasma proteins to give complexes that exhibit reproducible behaviour on Sephadex G-200 and are retained by ultrafiltration membranes, which the 12-20 kDa polysaccharide chains do filter. High charge plasma glycosaminoglycans show ionic interactions with proteins, while low charge glycosaminoglycan interactions are resistant to Ecteola charged groups, to 0.5% Triton and 4 M urea, while not to 4 M guanidine HC1. Some glycosaminoglycan-protein complexes appear resistant to proteolysis, suggesting that they may originate from lymphocytes. The simple method utilized for plasma GAG measurement may represent an useful tool in clinical practice.

摘要

酸性糖胺聚糖从正常人血浆中分离得到

(a) 在Sephadex G - 200上对血浆(添加蛋白酶抑制剂)进行分级分离后;(b) 通过超滤,使用截留分子量大于50 kDa的膜,添加或不添加NaCl、Triton X - 100、尿素或盐酸胍;(c) 在Ecteola - 纤维素上过滤未经处理的血浆或经NaCl、尿素、Triton X - 100、木瓜蛋白酶或NaOH处理后的血浆。超过95%的血浆糖胺聚糖与血浆蛋白相互作用形成复合物,这些复合物在Sephadex G - 200上表现出可重复的行为,并被超滤膜截留,而12 - 20 kDa的多糖链则能通过超滤膜。高电荷的血浆糖胺聚糖与蛋白质表现出离子相互作用,而低电荷糖胺聚糖的相互作用对Ecteola带电基团、0.5% Triton和4 M尿素具有抗性,但对4 M盐酸胍不具有抗性。一些糖胺聚糖 - 蛋白质复合物似乎对蛋白水解具有抗性,这表明它们可能起源于淋巴细胞。用于血浆GAG测量的简单方法可能是临床实践中的一个有用工具。

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