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人重组骨唾液蛋白和骨源性骨唾液蛋白的结构表征。对细胞黏附和羟基磷灰石结合的功能影响。

Structural characterization of human recombinant and bone-derived bone sialoprotein. Functional implications for cell attachment and hydroxyapatite binding.

作者信息

Wuttke M, Müller S, Nitsche D P, Paulsson M, Hanisch F G, Maurer P

机构信息

Institute for Biochemistry II, Medical Faculty, University of Cologne, D-50931 Cologne, Germany.

出版信息

J Biol Chem. 2001 Sep 28;276(39):36839-48. doi: 10.1074/jbc.M105689200. Epub 2001 Jul 17.

Abstract

Human bone sialoprotein (BSP) comprises 15% of the total noncollagenous proteins in bone and is thought to be involved in bone mineralization and remodeling. Recent data suggest a role for BSP in breast cancer and the development of bone metastases. We have produced full-length recombinant BSP in a human cell line and purified the protein from human bone retaining the native structure with proper folding and post-translational modifications. Mass spectrometry of bone-derived BSP revealed an average mass of 49 kDa and for recombinant BSP 57 kDa. The post-translational modifications contribute 30-40%. Carbohydrate analysis revealed 10 different complex-type N-glycans on both proteins and eight different O-glycans on recombinant BSP, four of those were found on bone-derived BSP. We could identify eight threonines modified by O-glycans, leaving the C terminus of the protein free of glycans. The recombinant protein showed similar secondary structures as bone-derived BSP. BSP was visualized in electron microscopy as a globule linked to a thread-like structure. The affinity for hydroxyapatite was higher for bone-derived BSP than for recombinant BSP. Cell adhesion assays showed that the binding of BSP to cells can be reversibly diminished by denaturation.

摘要

人骨唾液蛋白(BSP)占骨中非胶原蛋白总量的15%,被认为参与骨矿化和重塑过程。近期数据表明BSP在乳腺癌及骨转移发展中发挥作用。我们已在人细胞系中制备出全长重组BSP,并从人骨中纯化出该蛋白,其保留了具有正确折叠和翻译后修饰的天然结构。对源自骨的BSP进行质谱分析显示其平均质量为49 kDa,重组BSP的平均质量为57 kDa。翻译后修饰占30 - 40%。糖分析表明两种蛋白上均有10种不同的复合型N - 聚糖,重组BSP上有8种不同的O - 聚糖,其中4种在源自骨的BSP上也有发现。我们能够鉴定出8个被O - 聚糖修饰的苏氨酸,蛋白的C末端无聚糖。重组蛋白与源自骨的BSP具有相似的二级结构。在电子显微镜下,BSP呈现为与丝状结构相连的小球体。源自骨的BSP对羟基磷灰石的亲和力高于重组BSP。细胞黏附试验表明,BSP与细胞的结合可因变性而可逆地减弱。

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