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Inhibitors of the lipid phosphatase SHIP2 discovered by high-throughput affinity selection-mass spectrometry screening of combinatorial libraries.

机译:通过组合文库的高通量亲和选择质谱分析发现的脂质磷酸酶SHIP2抑制剂。

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This manuscript describes the discovery and characterization of inhibitors of the lipid phosphatase SHIP2, an important target for the treatment of Type 2 diabetes, using the Automated Ligand Identification System. ALIS is an affinity selection-mass spectrometry platform for label-free, high throughput screening of mixture-based combinatorial libraries. We detail the mass-encoded synthesis of a library that yielded NGD-61338, a pyrazole-based SHIP2 inhibitor. Quantitative ALIS affinity measurements and inhibition of SHIP2 enzymatic activity indicate that this compound has micromolar binding affinity and inhibitory activity for this target. This inhibitor, which does not contain a phosphatase "warhead," binds the active site of SHIP2 as determined by ALIS-based competition experiments with the enzyme's natural substrate, phosphatidylinositol 3,4,5-triphosphate (PIP3). Structure-activity relationships for NGD-61338 and two other ligand classes discovered by ALIS screening were explored using a combination of combinatorial library synthesis and ALIS-enabled affinity ranking in compound mixtures.
机译:该手稿描述了使用自动配体识别系统发现和表征脂质磷酸酶SHIP2的抑制剂,SHIP2是治疗2型糖尿病的重要靶标。 ALIS是一种亲和选择质谱仪平台,用于基于混合物的组合库的无标记,高通量筛选。我们详述了产生NGD-61338(吡唑基SHIP2抑制剂)的文库的质量编码合成。定量的ALIS亲和力测量值和对SHIP2酶活性的抑制作用表明,该化合物对该靶标具有微摩尔结合亲和力和抑制活性。该抑制剂不含磷酸酶“战斗部”,结合基于ALIS的竞争实验确定的SHIP2的活性位点与该酶的天然底物磷脂酰肌醇3,4,5-三磷酸(PIP3)结合。使用组合文库合成和ALIS启用的亲和力排序的组合,探索了通过ALIS筛选发现的NGD-61338和其他两个配体类别的结构活性关系。

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