[Isolation and characterization of proteoglycan in bovine periodontal ligament].

N Endo
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Abstract

Proteoglycan, one of the major non-collagenous protein in the connective tissue, is bound with fibronectin and other cell adhesion proteins, and has a role in the formation of the tissue and the organ. Although the glycosaminoglycan components in various tissue have been widely investigated, the molecular structure of periodontal ligament proteoglycan (PDL-PG) was rarely reported. In present study, proteoglycans of bovine periodontal ligament were purified by chromatography from material adsorbed by DEAE-Sephacel from a guanidium HCl extract. The sequential chromatographic steps consisted of ion-exchange chromatography on DEAE-Sephacel in 4M urea and gel filtration on Sepharose CL-4B in 4M guanidium HCl. The preparation contained a relatively small proteoglycan (Mr = 132,000 dalton) and a free glycosaminoglycan chain (Mr = 88,000 dalton). A Mr = 58,000 dalton core protein was shown by gradient SDS gel electrophoresis after chondroitinase ABC or chondroitinase AC II treatment. The glycosaminoglycan chains after chondroitinase AC II hydrolysis were seen on gel as polydispersed, broad alcian blue staining material (Mr = 20,000-60,000 dalton) while chains were totally hydrolyzed by chondroitinase ABC. These indicate a chondroitin sulfate/dermatan sulate (CS/DS) hybrid glycosaminoglycan chain. Papain digestion of the proteoglycan resulted in a single glycosaminoglycan chain after SDS gel electrophoresis with no protein band. These results suggest that the PDL-PG is slightly larger than that of bone and contains a single chondroitin sulphate/dermatan sulphate chain attached to a 58 K core protein. Antisera raised against PDL-PGs cross-reacted with PDL-PGs but not with other PDL proteins or bone PGs. It has been shown that during biosynthesis of dematan sulfate, L-iduronic acid is formed by epimerization of D-glucuronic acid, and sulfation. The degree of epimerization and sulfation may be related to the function of PDL in buffering the mechanical force applied to the tooth.

[牛牙周膜蛋白多糖的分离与表征]。
蛋白多糖是结缔组织中主要的非胶原蛋白之一,与纤维连接蛋白等细胞粘附蛋白结合,在组织和器官的形成中起作用。虽然糖胺聚糖在各种组织中的成分已被广泛研究,但对牙周膜蛋白聚糖(PDL-PG)的分子结构却鲜有报道。采用层析法从盐酸胍提取物的DEAE-Sephacel吸附材料中纯化牛牙周膜蛋白多糖。色谱步骤包括DEAE-Sephacel在4M尿素中离子交换层析和Sepharose CL-4B在4M盐酸胍中凝胶过滤。该制剂含有一个相对较小的蛋白聚糖(Mr = 132,000道尔顿)和一个游离的糖胺聚糖链(Mr = 88,000道尔顿)。经软骨素酶ABC或软骨素酶AC II处理后,SDS梯度凝胶电泳显示Mr = 58,000道尔顿的核心蛋白。软骨素酶AC II水解后的糖胺聚糖链在凝胶上呈多分散的宽阿利新蓝染色物质(Mr = 20,000-60,000道尔顿),而链被软骨素酶ABC完全水解。这表明硫酸软骨素/磺酸皮聚糖(CS/DS)杂化糖胺聚糖链。木瓜蛋白酶酶切蛋白多糖后,SDS凝胶电泳结果为单糖胺聚糖链,无蛋白带。这些结果表明,PDL-PG比骨的稍大,含有单个硫酸软骨素/硫酸皮肤蛋白链,连接在58 K核心蛋白上。抗PDL-PGs的抗血清与PDL-PGs交叉反应,但与其他PDL蛋白或骨PGs无交叉反应。研究表明,在硫酸德马丹的生物合成过程中,l -伊杜糖醛酸是由d -葡萄糖醛酸的外映和磺化反应形成的。外显异构和磺化的程度可能与PDL缓冲施加在牙齿上的机械力的功能有关。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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