Pelletier J P, Martel-Pelletier J, Malemud C J
Unité des Maladies Rhumatismales, Hôpital Notre-Dame, Montreal, QC, Canada.
J Orthop Res. 1988;6(3):379-88. doi: 10.1002/jor.1100060309.
The aim of this study was to analyze the mechanisms by which neutral metalloproteoglycanases (NMPE) degrade proteoglycans (PGs) in the cartilage of an experimental model of osteoarthritis (OA). We demonstrated that chondrocytes in osteoarthritic cartilage synthesize PGs with the same functional characteristics as those found in normal cartilage. Osteoarthritic cartilage contains NMPE in both active and latent forms. Both forms can degrade newly synthesized and endogenous PG macromolecules, as indicated by the reduced hydrodynamic size found in the two PG populations of osteoarthritic cartilage. PG monomers, derived from the included fraction of Sepharose CL2B chromatography, were unable to form aggregates with hyaluronic acid. Reduction and alkylation showed that PG monomers from osteoarthritic cartilage had a small hydrodynamic size, especially after activation with amino-phenylmercuric acetate. No significant differences were observed in the size of the chondroitin sulfate chain when normal cartilage was compared with its osteoarthritic equivalent. These results suggest that the proteolytic degradation of cartilage matrix PGs by NMPE occurs at both the hyaluronate-binding region and at the chondroitin sulfate-rich region of the core protein.
本研究的目的是分析中性金属蛋白聚糖酶(NMPE)在骨关节炎(OA)实验模型软骨中降解蛋白聚糖(PGs)的机制。我们证明,骨关节炎软骨中的软骨细胞合成的PGs具有与正常软骨中发现的PGs相同的功能特性。骨关节炎软骨含有活性和潜伏形式的NMPE。两种形式都能降解新合成的和内源性的PG大分子,这在骨关节炎软骨的两种PG群体中发现的流体动力学尺寸减小中得到了体现。来自琼脂糖CL2B色谱包含部分的PG单体无法与透明质酸形成聚集体。还原和烷基化表明,骨关节炎软骨中的PG单体具有较小的流体动力学尺寸,尤其是在用乙酸氨基苯汞激活后。当将正常软骨与其骨关节炎对应物进行比较时,硫酸软骨素链的大小没有观察到显著差异。这些结果表明,NMPE对软骨基质PGs的蛋白水解降解发生在核心蛋白的透明质酸结合区域和富含硫酸软骨素的区域。