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首页> 外文期刊>Journal of biomolecular screening: The official journal of the Society for Biomolecular Screening >A High-Throughput Mass Spectrometry Assay Coupled with Redox Activity Testing Reduces Artifacts and False Positives in Lysine Demethylase Screening
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A High-Throughput Mass Spectrometry Assay Coupled with Redox Activity Testing Reduces Artifacts and False Positives in Lysine Demethylase Screening

机译:高通量质谱分析与氧化还原活性测试相结合,可减少赖氨酸脱甲基酶筛选的伪影和假阳性

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Demethylation of histones by lysine demethylases (KDMs) plays a critical role in controlling gene transcription. Aberrant demethylation may play a causal role in diseases such as cancer. Despite the biological significance of these enzymes, there are limited assay technologies for study of KDMs and few quality chemical probes available to interrogate their biology. In this report, we demonstrate the utility of self-assembled monolayer desorption/ionization (SAMDI) mass spectrometry for the investigation of quantitative KDM enzyme kinetics and for high-throughput screening for KDM inhibitors. SAMDI can be performed in 384-well format and rapidly allows reaction components to be purified prior to injection into a mass spectrometer, without a throughput-limiting liquid chromatography step. We developed sensitive and robust assays for KDM1A (LSD1, AOF2) and KDM4C (JMJD2C, GASC1) and screened 13,824 compounds against each enzyme. Hits were rapidly triaged using a redox assay to identify compounds that interfered with the catalytic oxidation chemistry used by the KDMs for the demethylation reaction. We find that overall this high-throughput mass spectrometry platform coupled with the elimination of redox active compounds leads to a hit rate that is manageable for follow-up work.
机译:赖氨酸脱甲基酶(KDMs)对组蛋白的去甲基化在控制基因转录中起关键作用。异常的去甲基化可能在诸如癌症的疾病中起因果作用。尽管这些酶具有生物学意义,但用于研究KDM的检测技术有限,很少有可用于询问其生物学的优质化学探针。在本报告中,我们证明了自组装单层解吸/电离(SAMDI)质谱仪可用于定量KDM酶动力学研究和高通量筛选KDM抑制剂。 SAMDI可以384孔形式进行,并且可以快速纯化反应组分,然后再注入质谱仪,而没有限制生产量的液相色谱步骤。我们针对KDM1A(LSD1,AOF2)和KDM4C(JMJD2C,GASC1)开发了灵敏且稳定的分析方法,针对每种酶筛选了13,824种化合物。使用氧化还原测定法快速对命中进行分类,以鉴定出干扰KDM用于脱甲基反应的催化氧化化学的化合物。我们发现,总体而言,这种高通量质谱分析平台与氧化还原活性化合物的消除相结合,可导致命中率可用于后续工作。

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