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首页> 外文期刊>Journal of Medicinal Chemistry >Identification and specificity studies of small-molecule ligands for SH3 protein domains
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Identification and specificity studies of small-molecule ligands for SH3 protein domains

机译:SH3蛋白结构域的小分子配体的鉴定和特异性研究

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The Src Homology 3 (SH3) domains are small protein-protein interaction domains that bind proline-rich sequences and mediate a wide range of cell-signaling and other important biological processes. Since deregulated signaling pathways form the basis of many human diseases, the SH3 domains have been attractive targets for novel therapeutics. High-affinity ligands for SH3 domains have been designed; however, these have all been peptide-based and no examples of entirely nonpeptide SH3 ligands have previously been reported. Using the mouse Tec Kinase SH3 domain as a model system for structure-based ligand design, we have identified several simple heterocyclic compounds that selectively bind to the Tec SH3 domain. Using a combination of nuclear magnetic resonance chemical shift perturbation, structure-activity relationships, and site-directed mutagenesis, the binding of these compounds at the proline-rich peptide-binding site has been characterized. The most potent of these, 2-aminoquinoline, bound with K-d = 125 muM and was able to compete for binding with a proline-rich peptide. Synthesis of 6-substitued-2-aminoquinolines resulted in ligands with up to 6-fold improved affinity over 2-aminoquinoline and enhanced specificity for the Tec SH3 domain. Therefore, 2-aminoquinolines may potentially be useful for the development of high affinity small molecule ligands for SH3 domains.
机译:Src Homology 3(SH3)域是小的蛋白质-蛋白质相互作用域,可结合富含脯氨酸的序列并介导广泛的细胞信号转导和其他重要的生物学过程。由于失控的信号传导途径构成了许多人类疾病的基础,因此SH3结构域已成为新型疗法的诱人靶标。已经设计了SH3结构域的高亲和力配体。然而,这些都是基于肽的,以前没有报道完全非肽SH3配体的例子。使用小鼠Tec激酶SH3域作为基于结构的配体设计的模型系统,我们确定了几个简单的杂环化合物,它们选择性地结合到Tec SH3域。使用核磁共振化学位移扰动,结构-活性关系和定点诱变的组合,已经表征了这些化合物在富含脯氨酸的肽结合位点的结合。其中最有效的2-氨基喹啉与K-d = 125μM结合,并能够与富含脯氨酸的肽竞争结合。合成6-取代的2-氨基喹啉可以使配体的亲和力比2-氨基喹啉提高多达6倍,并且对Tec SH3结构域的特异性更高。因此,2-氨基喹啉可能潜在用于开发SH3域的高亲和力小分子配体。

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