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Identification of a small-molecule ligand of the epigenetic reader protein Spindlin1 via a versatile screening platform

机译:通过多功能筛选平台鉴定表观遗传阅读器蛋白Spindlin1的小分子配体

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摘要

Epigenetic modifications of histone tails play an essential role in the regulation of eukaryotic transcription. Writer and eraser enzymes establish and maintain the epigenetic code by creating or removing posttranslational marks. Specific binding proteins, called readers, recognize the modifications and mediate epigenetic signalling. Here, we present a versatile assay platform for the investigation of the interaction between methyl lysine readers and their ligands. This can be utilized for the screening of small-molecule inhibitors of such protein–protein interactions and the detailed characterization of the inhibition. Our platform is constructed in a modular way consisting of orthogonal in vitro binding assays for ligand screening and verification of initial hits and biophysical, label-free techniques for further kinetic characterization of confirmed ligands. A stability assay for the investigation of target engagement in a cellular context complements the platform. We applied the complete evaluation chain to the Tudor domain containing protein Spindlin1 and established the in vitro test systems for the double Tudor domain of the histone demethylase JMJD2C. We finally conducted an exploratory screen for inhibitors of the interaction between Spindlin1 and H3K4me3 and identified A366 as the first nanomolar small-molecule ligand of a Tudor domain containing methyl lysine reader.
机译:组蛋白尾部的表观遗传修饰在真核转录调控中起着至关重要的作用。书写和擦除酶通过创建或删除翻译后标记来建立和维持表观遗传密码。称为阅读器的特异性结合蛋白识别修饰并介导表观遗传信号。在这里,我们提出了一个多功能的测定平台,用于研究甲基赖氨酸阅读器与其配体之间的相互作用。可将其用于筛选此类蛋白质相互作用的小分子抑制剂,并详细描述抑制作用。我们的平台以模块化的方式构建,包括用于配体筛选和初始命中验证的正交体外结合测定法以及用于进一步动力学鉴定已确定配体的生物物理,无标签技术。用于研究细胞环境中靶标结合的稳定性测定法补充了该平台。我们将完整的评估链应用于包含蛋白质Spindlin1的Tudor域,并建立了组蛋白脱甲基酶JMJD2C的双重Tudor域的体外测试系统。我们最终对Spindlin1和H3K4me3之间的相互作用的抑制剂进行了探索性筛选,并将A366确定为含有甲基赖氨酸阅读器的Tudor域的第一个纳摩尔小分子配体。

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