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Bovine spleen cathepsin B1 and collagenolytic cathepsin. A comparative study of the properties of the two enzymes in the degradation of native collagen.

机译:牛脾组织蛋白酶B1和胶原分解组织蛋白酶。两种酶降解天然胶原蛋白特性的比较研究。

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摘要

Bovine spleen cathepsin B1 and collagenolytic cathepsin were separated by chromatography on Amberlite IRC-50 and collagenolytic cathepsin was partially purified by chromatography on DEAE-Sephadex (A-50). 2. Collagenolytic cathepsin degraded insoluble tendon collagen maximally at pH 3.5 and 28 degrees C; mainly alpha-chain components were released into solution. At 28 degrees C the telopeptides in soluble skin collagen were also cleaved to yield alpha-chain components. Collagenolytic cathepsin was thus similar to cathepsin B1 in its action against native collagen, but mixtures of these two enzymes exhibited a synergistic effect. 3. The addition of thiol-blocking compounds produced similar inhibition of collagenolytic cathepsin and cathepsin B1. The enzyme responded similarly to all other compounds tested except to 6-aminohexanoic acid, when collagenolytic cathepsin was slightly activated and cathepsin B1 was almost unaffected. 4. Leupeptin, which is a structural analogue of arginine-containing synthetic substrates, inhibited collagenolytic cathepsin as effectively as cathepsin B1. Collagenolytic cathepsin was shown to retain a low residual activity against alpha-N-benzoyl-DL-arginine p-nitroanilide during purification which was equivalent to 0.2% of the activity of cathepsin B1. 5. Cathepsin B1 and collagenolytic cathepsin could not be separated by affinity chromatography on organomercurial-Sepharose 4B. The two enzymes could be resolved on DEAE-Sephadex (A-50) and by isoelectric focusing in an Ampholine pH gradient. The pI of the major cathepsin B1 isoenzyme was 4.9 and the pI of collagenolytic cathepsin was 6.4. 6. From chromatography on Sephadex G-75 (superfine grade) the molecular weights were calculated to be 26000 for cathepsin B1 and 20000 for collagenolytic cathepsin. The difference in molecular weight was confirmed by sodium dodecyl sulphate/polyacrylamide-gel electrophoresis.
机译:通过在Amberlite IRC-50上的色谱法分离牛脾组织蛋白酶B1和胶原蛋白水解组织蛋白酶,并通过在DEAE-Sephadex(A-50)上的色谱法部分纯化胶原蛋白水解组织蛋白酶。 2.胶原蛋白水解组织蛋白酶在pH 3.5和28摄氏度下最大程度地降解了不溶性肌腱胶原蛋白;主要是α链成分被释放到溶液中。在28℃下,可溶性皮肤胶原中的端肽也被裂解以产生α链成分。因此,胶原蛋白水解组织蛋白酶在对抗天然胶原蛋白的作用方面类似于组织蛋白酶B1,但是这两种酶的混合物表现出协同作用。 3.添加巯基阻滞化合物对胶原蛋白水解组织蛋白酶和组织蛋白酶B1的抑制作用相似。当胶原蛋白水解组织蛋白酶被轻微激活而组织蛋白酶B1几乎不受影响时,该酶对所有其他测试化合物的反应均与6-氨基己酸相似,但对6-氨基己酸的响应却不同。 4. Leupeptin是含精氨酸的合成底物的结构类似物,与组织蛋白酶B1一样有效地抑制胶原蛋白水解组织蛋白酶。胶原蛋白水解组织蛋白酶在纯化过程中对α-N-苯甲酰基-DL-精氨酸对硝基苯胺的残留活性较低,相当于组织蛋白酶B1活性的0.2%。 5.在有机汞-Sepharose 4B上进行的亲和层析无法分离组织蛋白酶B1和胶原分解组织蛋白酶。可以在DEAE-Sephadex(A-50)上和通过在两性pH梯度中等电聚焦来解析这两种酶。主要组织蛋白酶B1同工酶的pI为4.9,胶原蛋白水解组织蛋白酶的pI为6.4。 6.根据Sephadex G-75(超细级)色谱法,组织蛋白酶B1的分子量计算为26000,胶原蛋白水解组织蛋白酶的分子量为20000。分子量的差异通过十二烷基硫酸钠/聚丙烯酰胺-凝胶电泳证实。

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    Etherington, D J;

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  • 年度 1976
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