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虚拟筛选和选择具有类药性的化合物以阻断 noggin 与骨形态发生蛋白的相互作用。

Virtual screening and selection of drug-like compounds to block noggin interaction with bone morphogenetic proteins.

机构信息

Laboratory of Bioinformatics and In Silico Drug Design, Biochemistry Department of Graduate Center, Queens College of City University of New York, 65-35 Kissena Blvd, Flushing, NY 11375, USA.

出版信息

J Mol Graph Model. 2010 Apr;28(7):670-82. doi: 10.1016/j.jmgm.2010.01.006. Epub 2010 Jan 22.

Abstract

Noggin is a major natural extracellular antagonist to bone morphogenetic proteins (BMPs) which binds to BMPs and blocks binding of them to BMP-specific receptors and thus negatively regulates BMP-induced osteoblastic differentiation. Bone morphogenetic proteins (BMPs) signal through heteromeric protein complexes composed of type I and type II serine/threonine kinase receptors. Preventing the BMP-2/noggin interaction will preserve free BMP-2 and enhance the efficacy of BMP-2 to induce bone formation. This work is an attempt to use the current understanding of BMP-2, and its interaction with its receptors and antagonist to design an inhibitor of BMP-2/noggin interaction with the goal of lowering the dose of BMP-2 required in clinical applications. The crystal structure of the BMP-7/noggin complex, the BMP-2/BMP receptor IA ectodomain complex and the extracellular domain of BMP receptor II monomer are known. We modeled the BMP-2 based on the structure of its homologue BMP-7 and its binding complex with noggin. We also modeled a complex of BMP-2/BMPRIA/BMPRII by modeling BMPRII and replacing ActRIIB in the BMP-2/BMPRIA/ActRIIB complex. We then identified the binding region of noggin with BMP-2 and the receptors with BMP-2. From the analysis of structures of these complexes and modeling we identified the key amino acids present in the entire interacting surfaces among these proteins that play important physiological role in the regulation of cell differentiation and bone metabolism. By in silico screening we selected and ranked several compounds that have high theoretical scores to bind to noggin to block BMP-noggin interaction.

摘要

诺金是一种主要的天然细胞外骨形态发生蛋白(BMPs)拮抗剂,可与 BMPs 结合并阻断其与 BMP 特异性受体的结合,从而负调控 BMP 诱导的成骨细胞分化。骨形态发生蛋白(BMPs)通过异源二聚体蛋白复合物传递信号,该复合物由 I 型和 II 型丝氨酸/苏氨酸激酶受体组成。阻止 BMP-2/诺金相互作用将保留游离的 BMP-2,并增强 BMP-2 诱导骨形成的功效。这项工作旨在利用目前对 BMP-2 的了解及其与受体和拮抗剂的相互作用,设计一种抑制 BMP-2/诺金相互作用的抑制剂,以降低临床应用中所需的 BMP-2 剂量。BMP-7/诺金复合物、BMP-2/BMP 受体 IA 胞外结构域复合物和 BMP 受体 II 单体的晶体结构是已知的。我们基于 BMP-7 的结构及其与诺金的结合复合物对 BMP-2 进行建模。我们还通过建模 BMPRII 并在 BMP-2/BMPRIA/ActRIIB 复合物中替换 ActRIIB 来构建 BMP-2/BMPRIA/BMPRII 复合物。然后,我们确定了诺金与 BMP-2 和受体与 BMP-2 的结合区域。通过对这些复合物结构和建模的分析,我们确定了这些蛋白质之间整个相互作用表面上存在的关键氨基酸,这些氨基酸在细胞分化和骨代谢的调节中发挥重要的生理作用。通过计算机筛选,我们选择并排列了几种具有与诺金结合以阻断 BMP-诺金相互作用的高理论评分的化合物。

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