Sapolsky A I, Howell D S, Woessner J F
J Clin Invest. 1974 Apr;53(4):1044-53. doi: 10.1172/JCI107641.
Proteolytic enzymes have been studied in extracts of human articular cartilage by the use of micromethods. The digestion of hemoglobin at pH 3.2 and of cartilage proteoglycan at pH 5 was shown to be due chiefly to cathepsin D. Cathepsin D was purified 900-fold from human patellar cartilage. Its identity was established by its specific cleavage of the B chain of insulin. At least six multiple forms of cathepsin D are present in cartilage; these corresponded to bovine forms 4-9. Cathepsin D had no action on proteins at pH 7.4. However, cartilage extracts digested proteoglycan, casein, and histone at this pH. The proteolytic activities against these three substrates were purified about 170-, 160-, and 70-fold, respectively. Each activity appeared in multiple forms on DEAE-Sephadex chromatography. The three activities appear to be different since cysteine inhibited casein digestion, aurothiomalate inhibited histone digestion, and neither inhibited proteoglycan digestion. Tests with a wide range of inhibitors and activators suggest that these three activities differ from other neutral proteases described in the literature.
已使用微量方法对人关节软骨提取物中的蛋白水解酶进行了研究。结果表明,在pH 3.2时血红蛋白的消化以及在pH 5时软骨蛋白聚糖的消化主要是由组织蛋白酶D引起的。从人髌骨软骨中纯化出了900倍的组织蛋白酶D。通过其对胰岛素B链的特异性切割确定了其身份。软骨中至少存在六种组织蛋白酶D的多种形式;这些与牛的4 - 9型相对应。组织蛋白酶D在pH 7.4时对蛋白质无作用。然而,软骨提取物在该pH值下可消化蛋白聚糖、酪蛋白和组蛋白。针对这三种底物的蛋白水解活性分别纯化了约170倍、160倍和70倍。在DEAE - 葡聚糖凝胶色谱上,每种活性均以多种形式出现。这三种活性似乎不同,因为半胱氨酸抑制酪蛋白消化,金硫苹果酸抑制组蛋白消化,而两者均不抑制蛋白聚糖消化。用多种抑制剂和激活剂进行的测试表明,这三种活性与文献中描述的其他中性蛋白酶不同。