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盘状结构域受体2与I型胶原蛋白的结合:原子力显微镜研究

Binding of discoidin domain receptor 2 to collagen I: an atomic force microscopy investigation.

作者信息

Agarwal Gunjan, Kovac Lubomir, Radziejewski Czeslaw, Samuelsson Steven J

机构信息

Procter & Gamble Pharmaceuticals, 8700 Mason Montgomery Road, Mason, Ohio 45040, USA.

出版信息

Biochemistry. 2002 Sep 17;41(37):11091-8. doi: 10.1021/bi020087w.

Abstract

Collagens have recently been identified as ligands for discoidin domain receptors (DDR1 and DDR2), generating an interest in studying the properties of binding of DDR to its ligand. We are interested in the interaction of DDR2 with collagen I because of its potential role in liver fibrosis. Our in vitro binding assay utilizes DDR2-Fc fusion proteins, which can be clustered (multimerized) by use of antibodies to form DDR2 complexes. Binding of DDR2 complexes to collagen I coated on plastic plates was established by a microplate-based assay using Eu(3+)-labeled proteins and time-resolved fluorometry. Clustering of the DDR2-Fc with antibody was found to be requisite for binding to collagen in vitro. Using atomic force microscopy (AFM) in an aqueous environment, we characterized the surface topographies of DDR2 complexes and collagen I, and investigated binding of this receptor-ligand pair. We were able to image and identify binding of DDR2 complexes onto individual molecules of triple-helical collagen and provide insight into the number and locations of binding sites on collagen I. In most cases, a single receptor complex bound to a single collagen molecule and there were preferred DDR2 binding sites on the collagen I triple helix. These data were validated by rotary-replication transmission electron microscopy (TEM) of glycerol-sprayed samples.

摘要

胶原蛋白最近被鉴定为盘状结构域受体(DDR1和DDR2)的配体,这引发了人们对研究DDR与其配体结合特性的兴趣。由于DDR2在肝纤维化中可能发挥的作用,我们对其与I型胶原蛋白的相互作用感兴趣。我们的体外结合试验利用DDR2-Fc融合蛋白,该蛋白可通过使用抗体进行聚集(多聚化)以形成DDR2复合物。通过基于微孔板的试验,使用铕(3+)标记的蛋白和时间分辨荧光法确定DDR2复合物与包被在塑料板上的I型胶原蛋白的结合。发现DDR2-Fc与抗体的聚集是体外与胶原蛋白结合所必需的。在水性环境中使用原子力显微镜(AFM),我们表征了DDR2复合物和I型胶原蛋白的表面形貌,并研究了这种受体-配体对的结合。我们能够成像并识别DDR2复合物与三螺旋胶原蛋白单个分子的结合,并深入了解I型胶原蛋白上结合位点的数量和位置。在大多数情况下,单个受体复合物与单个胶原蛋白分子结合,并且在I型胶原蛋白三螺旋上存在优先的DDR2结合位点。这些数据通过甘油喷雾样品的旋转复制透射电子显微镜(TEM)得到验证。

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