Characterization of proteoglycans synthesized by cultured arterial smooth muscle cells of the rat.

A Schmidt, A von Teutul, E Buddecke
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引用次数: 16

Abstract

Arterial smooth muscle cells cultured from rat aorta were labelled with sodium [35S]-sulfate in combination with either [3H]glucosamine or [3H]mannose. The newly synthesized hyaluronate and sulfated proteoglycans obtained from the growth medium (M-PG) and extracted from the cell layer (C-PG) with 4M guanidinium chloride in the presence of proteinase inhibitors were purified by sequential fractionation on Sepharose 4B CL, equilibrium density gradient centrifugation and ion exchange chromatography under dissociative conditions. Gel filtration of M-PG resulted in the separation of free hyaluronate and two size classes of [35S]-proteoglycan populations eluted at Kav 0.15 (fraction M-A) and 0.48 (fraction M-B). On further fractionation M-A dissociated into hyaluronate (Mr 1.6 X 10(6)) and a proteoglycan monomer (M-PG A, Mr 180 000), which contained chondroitin 4-sulfate (Mr 21 000) as the main glycosaminoglycan moiety. The proteoglycan isolated from M-B (M-PG B) was identified as a proteoglycan monomer (Mr 200 000) containing mainly chondroitin sulfate/dermatan sulfate hybrid side chains (Mr 34 000). [3H]Mannose labelling and binding to ConA Sepharose of both M-PG A and B indicated the presence of oligosaccharides of the glycoprotein type. An analogous fractionation of proteoglycans associated with the cell layer yielded two hyaluronate-proteoglycan complexes (C- PreA and C-A). The proteoglycan monomers of these complexes (C-PG PreA and C-PG A) had Mr values of 420 000 and 130 000. A non-complexed proteoglycan monomer C-PG B (Mr 90 000) was also found. All cell layer bound proteoglycans had glycosaminoglycan side chains with Mr approximately 36 000 but the predominant glycosaminoglycan component was either heparan sulfate, chondroitin sulfate or dermatan sulfate. All cell layer bound proteoglycans contained [3H]mannose radioactivity, about 15% of which was bound to ConA Sepharose.

培养大鼠动脉平滑肌细胞合成蛋白聚糖的表征。
用[35S]-硫酸钠联合[3H]氨基葡萄糖或[3H]甘露糖标记从大鼠主动脉培养的动脉平滑肌细胞。从生长培养基(M-PG)中获得新合成的透明质酸酯和硫酸盐化蛋白多糖,在蛋白酶抑制剂存在的情况下,用4M氯化胍从细胞层(C-PG)中提取,在Sepharose 4B CL上进行顺序分离,在解离条件下进行平衡密度梯度离心和离子交换层析纯化。M-PG的凝胶过滤分离了游离透明质酸和两种大小的[35S]-蛋白多糖群体,分别以0.15(分数M-A)和0.48(分数M-B)洗脱。进一步分离M-A分解成透明质酸酯(Mr 1.6 X 10(6))和蛋白多糖单体(M-PG a, Mr 18 000),其中含有硫酸软骨素4 (Mr 21 000)作为主要的糖胺多糖部分。从M-B中分离得到的蛋白多糖(M-PG B)被鉴定为主要含有硫酸软骨素/硫酸皮聚糖杂化侧链的蛋白多糖单体(Mr为20 000)。[3H]甘露糖标记并与M-PG A和B的ConA Sepharose结合表明存在糖蛋白型低聚糖。与细胞层相关的蛋白聚糖的类似分离产生两种透明质酸-蛋白聚糖复合物(C- PreA和C- a)。这些复合物的蛋白多糖单体(C-PG PreA和C-PG A)的Mr值分别为42万和13万。一个非络合的蛋白多糖单体C-PG B (Mr为90000)也被发现。所有细胞层结合的蛋白聚糖都有糖胺聚糖侧链,Mr约为36 000,但主要的糖胺聚糖成分是硫酸肝素、硫酸软骨素或硫酸皮聚糖。所有细胞层结合的蛋白聚糖均含有[3H]甘露糖放射性,其中约15%与ConA Sepharose结合。
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