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重组的和组织来源的小鼠BM-40能与多种胶原蛋白结合,并且在蛋白水解激活后亲和力增强。

Recombinant and tissue-derived mouse BM-40 bind to several collagen types and have increased affinities after proteolytic activation.

作者信息

Maurer P, Göhring W, Sasaki T, Mann K, Timpl R, Nischt R

机构信息

Max-Planck-Institut für Biochemie, Martinsried, Germany.

出版信息

Cell Mol Life Sci. 1997 May;53(5):478-84. doi: 10.1007/s000180050059.

Abstract

The calcium-binding extracellular matrix protein BM-40 was obtained as a mouse cDNA product from a stably transfected kidney cell clone. Electrophoresis and N-terminal sequence analysis demonstrated absence of the proteolytic processing previously observed for a mouse tumour-derived BM-40. Yet the two forms of BM-40 were very similar in their CD spectra, their calcium-dependent change in alpha helix content and their immunological epitopes. In surface plasmon resonance assays, recombinant mouse BM-40 showed distinct binding to the triple-helical domains of collagens I, II, III, IV and V with Kd = 1-4 microM but no binding to collagen VI. These interactions were abolished in the presence of EDTA. Tissue-derived mouse BM-40, however, bound collagens I and IV with Kd = 0.1-0.2 microM. Activation of collagen binding to give a similar Kd could be achieved for recombinant mouse BM-40 by treatment with the matrix metalloproteinase collagenase-3. The major cleavage site was located in helix C of the extracellular calcium-binding module of BM-40 and other less prominent cleavages occurred close to the N-terminus. The sensitive helix C site was just one residue away from that sensitive to endogenous tissue proteolysis, suggesting that cleavage could be a physiological mechanism to modulate collagen binding.

摘要

钙结合细胞外基质蛋白BM - 40是从稳定转染的肾细胞克隆中获得的小鼠cDNA产物。电泳和N端序列分析表明,未观察到先前在小鼠肿瘤来源的BM - 40中出现的蛋白水解加工现象。然而,两种形式的BM - 40在其圆二色光谱、α螺旋含量的钙依赖性变化及其免疫表位方面非常相似。在表面等离子体共振分析中,重组小鼠BM - 40与I、II、III、IV和V型胶原蛋白的三螺旋结构域有明显结合,解离常数(Kd)为1 - 4微摩尔,但与VI型胶原蛋白无结合。在乙二胺四乙酸(EDTA)存在下,这些相互作用被消除。然而,组织来源的小鼠BM - 40与I型和IV型胶原蛋白结合,Kd为0.1 - 0.2微摩尔。通过用基质金属蛋白酶胶原酶 - 3处理重组小鼠BM - 40,可以使其激活胶原蛋白结合,从而获得相似的Kd。主要切割位点位于BM - 40细胞外钙结合模块的螺旋C中,其他不太明显的切割发生在靠近N端的位置。敏感的螺旋C位点与对内源性组织蛋白水解敏感的位点仅相差一个残基,这表明切割可能是调节胶原蛋白结合的一种生理机制。

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