Tam Y C, Chan E C
Infect Immun. 1985 Feb;47(2):508-13. doi: 10.1128/iai.47.2.508-513.1985.
Hyaluronidase was purified to apparent homogeneity from the spent medium of Peptostreptococcus sp. strain 84H14S. The enzyme was purified 310-fold by ethanol precipitation, gel chromatography, and cation-exchange chromatography with a recovery of 42% of the original activity in the culture medium. The molecular weight of the purified enzyme was estimated to be 160,000 by gel filtration with Sephacryl S-300. Like bacterial mucopolysaccharidases of other sources, the enzyme carried out an eliminative reaction with the substrate, producing 4,5-unsaturated disaccharides as the final end products. Its optimum temperature of activity is 46 degrees C. The purified peptostreptococcal hyaluronidase was different from previously reported bacterial hyaluronidases in several respects. It degraded hyaluronic acid rapidly and also exhibited some activity against chondroitin sulfate A and chondroitin sulfate C. The KmS for hyaluronic acid, chondroitin sulfate A, and chondroitin sulfate C were 0.14, 1.4, and 2.6 mg/ml, respectively. The specific activity of hyaluronidase was much higher than that of any previously purified mucopolysaccharidases. The Vmax against hyaluronic acid reached 400 mmol of product per min per mg of protein at 22 degrees C. The peptostreptococcal hyaluronidase was also unique in that its optimum pH of activity was around neutrality, whereas other bacterial hyaluronidases were most active at acidic pHs.
透明质酸酶从消化链球菌属84H14S菌株的用过的培养基中纯化至表观均一。通过乙醇沉淀、凝胶色谱和阳离子交换色谱将该酶纯化了310倍,在培养基中的活性回收率为原始活性的42%。用Sephacryl S-300凝胶过滤法估计纯化酶的分子量为160,000。与其他来源的细菌粘多糖酶一样,该酶与底物进行消除反应,产生4,5-不饱和二糖作为最终终产物。其最适活性温度为46℃。纯化的消化链球菌透明质酸酶在几个方面与先前报道的细菌透明质酸酶不同。它能快速降解透明质酸,并且对硫酸软骨素A和硫酸软骨素C也表现出一些活性。透明质酸、硫酸软骨素A和硫酸软骨素C的Km值分别为0.14、1.4和2.6mg/ml。透明质酸酶的比活性远高于任何先前纯化的粘多糖酶。在22℃时,针对透明质酸的Vmax达到每分钟每毫克蛋白质400mmol产物。消化链球菌透明质酸酶的独特之处还在于其最适活性pH值接近中性,而其他细菌透明质酸酶在酸性pH值下活性最高。