首页> 美国卫生研究院文献>The EMBO Journal >Crystal structure and mapping by site-directed mutagenesis of the collagen-binding epitope of an activated form of BM-40/SPARC/osteonectin.
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Crystal structure and mapping by site-directed mutagenesis of the collagen-binding epitope of an activated form of BM-40/SPARC/osteonectin.

机译:晶体结构和通过定点诱变激活形式的BM-40 / SPARC /骨结合蛋白的胶原蛋白结合表位进行定位。

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摘要

The extracellular calcium-binding domain (positions 138-286) of the matrix protein BM-40 possesses a binding epitope of moderate affinity for several collagen types. This epitope was predicted to reside in helix alphaA and to be partially masked by helix alphaC. Here we show that deletion of helix alphaC produces a 10-fold increase in collagen affinity similar to that seen after proteolytic cleavage of this helix. The predicted removal of the steric constraint was clearly demonstrated by the crystal structure of the mutant at 2.8 A resolution. This constitutively activated mutant was used to map the collagen-binding site following alanine mutagenesis at 13 positions. Five residues were crucial for binding, R149 and N156 in helix alphaA, and L242, M245 and E246 in a loop region connecting the two EF hands of BM-40. These residues are spatially close and form a flat ring of 15 A diameter which matches the diameter of a triple-helical collagen domain. The mutations showed similar effects on binding to collagens I and IV, indicating nearly identical binding sites on both collagens. Selected mutations in the non-activated mutant DeltaI also reduced collagen binding, consistent with the same location of the epitope but in a more cryptic form in intact BM-40.
机译:基质蛋白BM-40的细胞外钙结合结构域(位置138-286)具有对几种胶原类型的中等亲和力的结合表位。预测该表位位于螺旋αA中,并被螺旋αC部分掩盖。在这里,我们显示螺旋αC的删除产生胶原亲和力的10倍增加,类似于该螺旋的蛋白水解切割后所见。通过在2.8 A分辨率下突变体的晶体结构清楚地证明了预期的空间约束消除。该组成性活化的突变体用于在丙氨酸诱变后在13个位置定位胶原蛋白结合位点。五个残基对于结合至关重要,螺旋αA中的R149和N156,以及连接BM-40的两个EF手的环区域中的L242,M245和E246至关重要。这些残基在空间上紧密并形成直径为15 A的扁平环,该环与三螺旋胶原结构域的直径匹配。突变显示出与胶原I和IV结合的相似作用,表明两种胶原上的结合位点几乎相同。未活化的突变体DeltaI中的选定突变也降低了胶原蛋白的结合,与表位的相同位置一致,但在完整的BM-40中呈更隐秘的形式。

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