Sasaki T, Göhring W, Mann K, Maurer P, Hohenester E, Knäuper V, Murphy G, Timpl R
Max-Planck-Institut für Biochemie, D-82152 Martinsried, Federal Republic of Germany.
J Biol Chem. 1997 Apr 4;272(14):9237-43. doi: 10.1074/jbc.272.14.9237.
The 33-kDa matrix protein BM-40 (SPARC, osteonectin) consists of an acidic N-terminal domain I, a central cysteine-rich follistatin-like module, and a C-terminal extracellular calcium-binding (EC) module. Previous studies attributed collagen IV and high affinity calcium binding of BM-40 to its EC module, which was shown by x-ray crystallography to consist of an EF-hand pair surrounded by several alpha-helical and loop segments. This module was now shown by surface plasmon resonance assay to bind with similar affinities to collagens I, III, and V. Cleavage of recombinant BM-40 and its EC module by collagenase-3, gelatinases A and B, matrilysin, and stromelysin-1 showed similar fragment patterns, whereas collagenase-1 was inactive. Some differences were, however, observed in cleavage rates and the preference of certain cleavage sites. Edman degradation of fragments demonstrated only three to four major cleavage sites in the central region of domain I and a single uniform cleavage in helix C of the EC module. Cleavage is accompanied by a 7-20-fold increase in binding activity for collagens I, IV, and V but revealed only small effects on calcium-dependent alpha-helical changes in the EC module. The data were interpreted to indicate that helix C cleavage is mainly responsible for enhancing collagen affinity by exposing the underlying helix A of the EC module. A similar activation may also occur in situ as indicated previously for tissue-derived BM-40.
33 kDa的基质蛋白BM-40(骨连接素,富含半胱氨酸的酸性分泌蛋白)由一个酸性的N端结构域I、一个富含半胱氨酸的中央类卵泡抑素样模块和一个C端细胞外钙结合(EC)模块组成。先前的研究将BM-40与IV型胶原的结合以及其高亲和力的钙结合归因于其EC模块,X射线晶体学显示该模块由一对EF手结构组成,周围环绕着几个α螺旋和环段。现在通过表面等离子体共振分析表明,该模块以相似的亲和力与I、III和V型胶原结合。用胶原酶-3、明胶酶A和B、基质溶素和基质金属蛋白酶-1对重组BM-40及其EC模块进行切割,显示出相似的片段模式,而胶原酶-1无活性。然而,在切割速率和某些切割位点的偏好上观察到了一些差异。对片段进行的埃德曼降解仅在结构域I的中央区域显示出三到四个主要切割位点,在EC模块的螺旋C中只有一个单一的均匀切割位点。切割伴随着与I、IV和V型胶原结合活性增加7至20倍,但对EC模块中钙依赖性α螺旋变化的影响很小。这些数据被解释为表明螺旋C的切割主要通过暴露EC模块下方的螺旋A来增强胶原亲和力。如先前对组织来源的BM-40所示,类似的激活也可能在原位发生。