首页> 外文期刊>Journal of Medicinal Chemistry >Identification of Small Molecular Weight Inhibitors of Src Homology 2 Domain-Containing Tyrosine Phosphatase 2 (SHP-2) via in Silico Database Screening Combined with Experimental Assay
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Identification of Small Molecular Weight Inhibitors of Src Homology 2 Domain-Containing Tyrosine Phosphatase 2 (SHP-2) via in Silico Database Screening Combined with Experimental Assay

机译:通过计算机数据库筛选和实验分析相结合,鉴定Src同源2域的酪氨酸磷酸酶2(SHP-2)的小分子量抑制剂

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摘要

Virtual screening methods combined with experimental assays were used to identify low molecular weight inhibitors for Src homology 2 domain-containing phosphatase 2 (SHP-2) that is mutated and hyperactivated in Noonan syndrome and a significant portion of childhood leukemias. Virtual screening included multiple conformations of the protein, score normalization procedures, and chemical similarity considerations. As the catalytic core of SHP-2 shares extremely high homology to those of the related SHP-1 phosphatase and other tyrosine phosphatases, in order to identify selective inhibitors, we chose to target an adjacent protein surface pocket that is predicted to be important for binding to phosphopeptides and that has structural features unique to SHP-2. From a database of 1.3 million compounds, 9 out of 165 computationally selected compounds were shown to inhibit SHP-2 activity with IC50 values of approximate to 100 mu M. Two of the active compounds were further verified for their ability to inhibit SHP-2-mediated cellular functions. Fluorescence titration experiments confirmed their direct binding to SHP-2. Because of their simple chemical structures, these small organic Compounds have the potential to act as lead compounds for the development of novel antiSHP-2 drugs.
机译:虚拟筛选方法与实验分析相结合,被用于识别低分子量抑制剂,用于在Noonan综合征和大部分儿童白血病中突变和过度活化的Src同源2域含磷酸酶2(SHP-2)。虚拟筛选包括蛋白质的多种构象,评分标准化程序和化学相似性考虑因素。由于SHP-2的催化核心与相关的SHP-1磷酸酶和其他酪氨酸磷酸酶具有极高的同源性,为了鉴定选择性抑制剂,我们选择靶向预测对结合很重要的相邻蛋白质表面口袋磷酸肽,具有SHP-2特有的结构特征。从130万种化合物的数据库中,从165种经计算选择的化合物中,有9种显示出抑制SHP-2活性,IC50值接近100μM。进一步证实了两种活性化合物具有抑制SHP-2的能力。介导的细胞功能。荧光滴定实验证实了它们与SHP-2的直接结合。由于其简单的化学结构,这些小的有机化合物有可能作为先导化合物用于新型抗SHP-2药物的开发。

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