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猪主动脉蛋白聚糖。其与脂蛋白相互作用的比较研究。

Proteoglycans from pig aorta. Comparative study of their interactions with lipoproteins.

作者信息

Wegrowski J, Moczar M, Robert L

出版信息

Biochem J. 1986 May 1;235(3):823-31. doi: 10.1042/bj2350823.

Abstract

Different proteoglycans (PGs) were isolated from pig aorta for aggregation studies with hyaluronic acid and human low-density lipoproteins (LDL). Extraction of the intima-media with 4M-guanidinium chloride and digestion of the residue with collagenase solubilized 91% of aortic hexuronic acid content. From the guanidinium chloride extract two PGs were isolated by ion-exchange and gel-permeation chromatography: proteochondroitin sulphate (PGI) with a protein-core apparent Mr of 250 000 and proteodermatan-chondroitin sulphate (PGII) with a protein-core apparent Mr of 55 000. Only PGI forms high-Mr aggregates with hyaluronic acid. From the collagenase digest two other PGs were isolated: proteoheparan sulphate and proteochondroitin sulphate (PGIII and PGIV respectively). PGIV had a smaller hydrodynamic size than PGI. PGI and PGII formed insoluble complexes with human LDL in the presence of Ca2+. PGIII or PGIV did not form precipitates with the LDL. PGI and PGII, but neither PGIII nor PGIV, were bound to LDL-Sepharose. The main peaks of PGI and PGII were eluted from LDL-Sepharose with 60 mM- and 90 mM-NaCl respectively. The results indicate that aortic PGs have different interacting potentials with lipoproteins, depending on their Mr and their glycosaminoglycan composition.

摘要

从猪主动脉中分离出不同的蛋白聚糖(PGs),用于与透明质酸和人低密度脂蛋白(LDL)进行聚集研究。用4M-胍盐酸盐提取内膜中层,并用胶原酶消化残留物,可溶解91%的主动脉己糖醛酸含量。通过离子交换和凝胶渗透色谱从胍盐酸盐提取物中分离出两种PGs:蛋白硫酸软骨素(PGI),其蛋白核心表观分子量为250000,蛋白硫酸皮肤素-软骨素(PGII),其蛋白核心表观分子量为55000。只有PGI能与透明质酸形成高分子量聚集体。从胶原酶消化物中分离出另外两种PGs:蛋白硫酸乙酰肝素和蛋白硫酸软骨素(分别为PGIII和PGIV)。PGIV的流体力学尺寸比PGI小。在Ca2+存在下,PGI和PGII与人LDL形成不溶性复合物。PGIII或PGIV与LDL不形成沉淀。PGI和PGII,但PGIII和PGIV均不与LDL-琼脂糖结合。PGI和PGII的主要峰分别用60 mM和90 mM NaCl从LDL-琼脂糖中洗脱。结果表明,主动脉PGs与脂蛋白具有不同的相互作用潜力,这取决于它们的分子量和糖胺聚糖组成。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/056c/1146761/e013422f5b2c/biochemj00280-0197-a.jpg

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