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Mapping of SPARC/BM-40/Osteonectin-binding Sites on Fibrillar Collagens

机译:SPARC / BM-40 / Osteonectin结合位点在原纤维上的作图 胶原蛋白

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摘要

The 33-kDa matrix protein SPARC (BM-40, osteonectin) binds several collagen types with moderate affinity. The collagen-binding site resides in helix αA of the extracellular calcium-binding domain of SPARC and is partially masked by helix αC. Previously, we found that the removal of helix αC caused a 10-fold increase in the affinity of SPARC for collagen, and we identified amino acids crucial for binding by site-directed mutagenesis. In this study, we used rotary shadowing, CNBr peptides, and synthetic peptides to map binding sites of SPARC onto collagens I, II, and III. Rotary shadowing and electron microscopy of SPARC-collagen complexes identified a major binding site ∼180 nm from the C terminus of collagen. SPARC binding was also detected with lower frequency near the matrix metalloproteinase cleavage site. These data fit well with our analysis of SPARC binding to CNBr peptides, denaturation of which abolished binding, indicating triple-helical conformation of collagen to be essential. SPARC binding was substantially decreased in two of seven α2(I) mutant procollagen I samples and after N-acetylation of Lys/Hyl side chains in wild-type collagen. Synthetic peptides of collagen III were used to locate the binding sites, and we found SPARC binding activity in a synthetic triple-helical peptide containing the sequence GPOGPSGPRGQOGVMGFOGPKGNDGAO (where O indicates 4-hydroxyproline), with affinity for SPARC comparable with that of procollagen III. This sequence is conserved among α chains of collagens I, II, III, and V. In vitro collagen fibrillogenesis was delayed in the presence of SPARC, suggesting that SPARC might modulate collagen fibril assembly in vivo.
机译:33 kDa基质蛋白SPARC(BM-40,骨连接蛋白)以中等亲和力结合几种胶原蛋白。胶原结合位点位于SPARC细胞外钙结合结构域的螺旋αA中,并被螺旋αC部分掩盖。以前,我们发现去除螺旋αC会导致SPARC对胶原蛋白的亲和力增加10倍,并且我们发现了通过定点诱变对结合至关重要的氨基酸。在这项研究中,我们使用了旋转阴影,CNBr肽和合成肽来将SPARC的结合位点定位到I,II和III型胶原上。旋转阴影和SPARC-胶原蛋白复合物的电子显微镜检查确定了一个主要的结合位点,距胶原C端约180 nm。还以较低的频率在基质金属蛋白酶切割位点附近检测到SPARC结合。这些数据与我们对SPARC与CNBr肽的结合的分析非常吻合,该结合的变性消除了结合,表明胶原蛋白的三螺旋构象是必不可少的。在七个α2(I)突变型胶原蛋白I样品中的两个中,以及在野生型胶原蛋白中Lys / Hyl侧链的N-乙酰化后,SPARC的结合都大大降低。使用胶原蛋白III的合成肽定位结合位点,我们发现 SPARC在合成的三螺旋肽中的结合活性 序列GPOGPSGPRGQOGVMGFOGPKGNDGAO(其中O表示4-羟基脯氨酸), 对SPARC的亲和力与前胶原III相当。这个顺序 在胶原I,II,III和V的α链中保守。 在SPARC的存在下,体外胶原纤维原纤维形成被延迟, 提示SPARC可能会调节胶原蛋白原纤维的组装 体内。

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