Buck M R, Karustis D G, Day N A, Honn K V, Sloane B F
Department of Pharmacology, Wayne State University, Detroit, MI 48201.
Biochem J. 1992 Feb 15;282 ( Pt 1)(Pt 1):273-8. doi: 10.1042/bj2820273.
Our laboratory has previously demonstrated that increased malignancy of several histological types of human and animal tumours is associated with increases in their cathepsin B activity, particularly cathepsin B activity associated with plasma-membrane/endosomal vesicles or shed vesicles. Here we report that cathepsin B from normal or tumour tissues degrades purified extracellular-matrix components, type IV collagen, laminin and fibronectin, at both acid pH and neutral pH. The number and sizes of degradation products were analysed by SDS/PAGE. Cathepsin B from both sources exhibited similar activities towards, and similar patterns of cleavage of, the extracellular-matrix proteins. At neutral pH, cathepsin B from both sources appeared to undergo autodegradation, a process that was decreased in the presence of alternative substrates such as the extracellular-matrix proteins. Cathepsin B readily degraded type IV collagen at 25 degrees C, indicating activity towards native type IV collagen. Fibronectin degradation products of 100-200 kDa and of 18 and 22 kDa were observed. A single 70 kDa fragment was released from laminin under non-reducing conditions and multiple fragments ranging from 45 to 200 kDa under reducing conditions. These results suggest that cathepsin B at or near the surface of malignant tumour cells may play a functional role in the focal dissolution of extracellular matrices.
我们实验室之前已经证明,几种人类和动物肿瘤组织学类型的恶性程度增加与其组织蛋白酶B活性的增加有关,特别是与质膜/内体囊泡或脱落囊泡相关的组织蛋白酶B活性。在此我们报告,来自正常或肿瘤组织的组织蛋白酶B在酸性pH和中性pH条件下均可降解纯化的细胞外基质成分、IV型胶原、层粘连蛋白和纤连蛋白。通过SDS/PAGE分析降解产物的数量和大小。来自这两种来源的组织蛋白酶B对细胞外基质蛋白表现出相似的活性和相似的切割模式。在中性pH条件下,来自这两种来源的组织蛋白酶B似乎会发生自降解,在存在诸如细胞外基质蛋白等替代底物时,这一过程会减弱。组织蛋白酶B在25℃时能迅速降解IV型胶原,表明其对天然IV型胶原具有活性。观察到纤连蛋白有100 - 200 kDa以及18和22 kDa的降解产物。在非还原条件下,层粘连蛋白释放出一个单一的70 kDa片段,在还原条件下则释放出多个45至200 kDa的片段。这些结果表明,恶性肿瘤细胞表面或其附近的组织蛋白酶B可能在细胞外基质的局灶性溶解中发挥功能性作用。