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用于JMJD3去甲基化酶抑制剂的活性筛选和药理学评估的高内涵成像平台的配置。

Configuration of a high-content imaging platform for hit identification and pharmacological assessment of JMJD3 demethylase enzyme inhibitors.

作者信息

Mulji Alpa, Haslam Carl, Brown Fiona, Randle Rebecca, Karamshi Bhumika, Smith Julia, Eagle Robert, Munoz-Muriedas Jordi, Taylor Joanna, Sheikh Arshad, Bridges Angela, Gill Kirsty, Jepras Rob, Smee Penny, Barker Mike, Woodrow Mike, Liddle John, Thomas Pamela, Jones Emma, Gordon Laurie, Tanner Rob, Leveridge Melanie, Hutchinson Sue, Martin Margaret, Brown Murray, Kruidenier Laurens, Katso Roy

机构信息

Platform Technology and Sciences, Medicines Research Centre, GlaxoSmithKline R&D, Stevenage, UK.

出版信息

J Biomol Screen. 2012 Jan;17(1):108-20. doi: 10.1177/1087057111418229.

Abstract

The biological complexity associated with the regulation of histone demethylases makes it desirable to configure a cellular mechanistic assay format that simultaneously encompasses as many of the relevant cellular processes as possible. In this report, the authors describe the configuration of a JMJD3 high-content cellular mechanistic imaging assay that uses single-cell multiparameter measurements to accurately assess cellular viability and the enzyme-dependent demethylation of the H3K27(Me)3 mark by exogenously expressed JMJD3. This approach couples robust statistical analyses with the spatial resolving power of cellular imaging. This enables segregation of expressing and nonexpressing cells into discrete subpopulations and consequently pharmacological quantification of compounds of interest in the expressing population at varying JMJD3 expression levels. Moreover, the authors demonstrate the utility of this hit identification strategy through the successful prosecution of a medium-throughput focused campaign of an 87 500-compound file, which has enabled the identification of JMJD3 cellular-active chemotypes. This study represents the first report of a demethylase high-content imaging assay with the ability to capture a repertoire of pharmacological tools, which are likely both to inform our mechanistic understanding of how JMJD3 is modulated and, more important, to contribute to the identification of novel therapeutic modalities for this demethylase enzyme.

摘要

与组蛋白去甲基化酶调控相关的生物学复杂性使得构建一种细胞机制检测形式成为必要,该检测形式应尽可能多地涵盖相关细胞过程。在本报告中,作者描述了一种JMJD3高内涵细胞机制成像检测方法的构建,该方法使用单细胞多参数测量来准确评估细胞活力,以及外源性表达的JMJD3对H3K27(Me)3标记的酶依赖性去甲基化。这种方法将强大的统计分析与细胞成像的空间分辨率相结合。这使得能够将表达细胞和非表达细胞分离为离散的亚群,从而在不同的JMJD3表达水平下,对表达群体中感兴趣的化合物进行药理学定量。此外,作者通过成功开展一项针对87500种化合物文库的中通量聚焦筛选活动,证明了这种命中识别策略的实用性,该活动使得能够识别出具有JMJD3细胞活性的化学类型。这项研究代表了首次报道一种具有捕获一系列药理学工具能力的去甲基化酶高内涵成像检测方法,这些工具不仅可能有助于我们从机制上理解JMJD3是如何被调控的,更重要的是,有助于识别针对这种去甲基化酶的新型治疗方式。

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