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无标记及直观观察骨形态发生蛋白-2 与软骨寡聚基质蛋白的多价结合。

Label-Free and Direct Visualization of Multivalent Binding of Bone Morphogenetic Protein-2 with Cartilage Oligomeric Matrix Protein.

机构信息

Department of Chemistry , University of California , Davis , California 95616 , United States.

Department of Biomedical Engineering , University of California , Davis , California 95616 , United States.

出版信息

J Phys Chem B. 2019 Jan 10;123(1):39-46. doi: 10.1021/acs.jpcb.8b08564. Epub 2018 Dec 28.

Abstract

This work presents the first direct evidence of multivalent binding between bone morphogenetic protein-2 (BMP-2) and cartilage oligomeric matrix protein (COMP) using high-resolution atomic force microscopy (AFM) imaging. AFM topographic images reveal the molecular morphology of COMP, a pentameric protein whose five identical monomer units bundle together at N-termini, extending out with flexible chains to C-termini. Upon addition of BMP-2, COMP molecules undergo conformational changes at the C-termini to enable binding with BMP-2 molecules. AFM enables local structural changes of COMP to be revealed upon binding various numbers, 1-5, of BMP-2 molecules. These BMP-2/COMP complexes exhibit very different morphologies from those of COMP: much more compact and thus less flexible. These molecular-level insights deepen current understanding of the mechanism of how the BMP-2/COMP complex enhances osteogenesis among osteoprogenitor cells, i.e., multivalent presentation of BMP-2 via the stable and relatively rigid BMP-2/COMP complex could form a lattice of interaction between multiple BMP-2 and BMP-2 receptors. These ligand-receptor clusters lead to fast initiation and sustained activation of the Smad signaling pathway, resulting in enhanced osteogenesis. This work is also of translational importance as the outcome may enable use of lower BMP-2 dosage for bone repair and regeneration.

摘要

本研究利用高分辨率原子力显微镜(AFM)成像首次直接证实了骨形态发生蛋白-2(BMP-2)与软骨寡聚基质蛋白(COMP)之间的多价结合。AFM 形貌图像揭示了 COMP 的分子形态,COMP 是一种五聚体蛋白,其五个相同的单体单元在 N 端束在一起,带有柔性链延伸到 C 端。加入 BMP-2 后,COMP 分子在 C 端发生构象变化,从而能够与 BMP-2 分子结合。AFM 能够揭示 COMP 在结合不同数量(1-5)的 BMP-2 分子时的局部结构变化。这些 BMP-2/COMP 复合物的形态与 COMP 非常不同:更加紧凑,因此灵活性降低。这些分子水平的见解加深了我们对 BMP-2/COMP 复合物如何增强成骨前体细胞成骨作用的机制的理解,即通过稳定且相对刚性的 BMP-2/COMP 复合物多价呈现 BMP-2 可以形成多个 BMP-2 和 BMP-2 受体之间的相互作用晶格。这些配体-受体簇导致 Smad 信号通路的快速启动和持续激活,从而增强成骨作用。这项工作也具有转化意义,因为其结果可能使骨修复和再生中 BMP-2 的用量更低。

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