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一项定量高通量筛选鉴定出了基因表达的潜在表观遗传调节剂。

A quantitative high-throughput screen identifies potential epigenetic modulators of gene expression.

作者信息

Johnson Ronald L, Huang Wenwei, Jadhav Ajit, Austin Christopher P, Inglese James, Martinez Elisabeth D

机构信息

NIH Chemical Genomics Center, National Institutes of Health, Bethesda, MD 20892, USA.

出版信息

Anal Biochem. 2008 Apr 15;375(2):237-48. doi: 10.1016/j.ab.2007.12.028. Epub 2007 Dec 25.

Abstract

Epigenetic regulation of gene expression is essential in embryonic development and contributes to cancer pathology. We used a cell-based imaging assay that measures derepression of a silenced green fluorescent protein (GFP) reporter to identify novel classes of compounds involved in epigenetic regulation. This locus derepression (LDR) assay was screened against a 69,137-member chemical library using quantitative high-throughput screening (qHTS), a titration-response method that assays compounds at multiple concentrations. From structure-activity relationships of the 411 actives recovered from the qHTS, 6 distinct chemical series were chosen for further study. A total of 48 qHTS actives and analogs were counterscreened using the parental line of the LDR cells, which lack the GFP reporter. Three series-8-hydroxy quinoline, quinoline-8-thiol, and 1,3,5-thiadiazinane-2-thione-were not fluorescent and reconfirmed activity in the LDR cells. The three active series did not inhibit histone deacetylase activity in nuclear extracts or reactivate the expression of the densely methylated p16 gene in cancer cells. However, one series induced expression of the methylated CDH13 gene and inhibited the viability of several lung cancer lines at submicromolar concentrations. These results suggest that the identified small molecules act on epigenetic or transcriptional components and validate our approach of using a cell-based imaging assay in conjunction with qHTS.

摘要

基因表达的表观遗传调控在胚胎发育中至关重要,并与癌症病理学相关。我们使用了一种基于细胞的成像分析方法,该方法通过检测沉默的绿色荧光蛋白(GFP)报告基因的去抑制来鉴定参与表观遗传调控的新型化合物类别。使用定量高通量筛选(qHTS),一种在多个浓度下检测化合物的滴定反应方法,针对一个包含69,137个成员的化学文库对该基因座去抑制(LDR)分析进行了筛选。从qHTS中回收的411种活性物质的构效关系中,选择了6个不同的化学系列进行进一步研究。使用缺乏GFP报告基因的LDR细胞的亲本系对总共48种qHTS活性物质和类似物进行了反向筛选。三个系列——8-羟基喹啉、喹啉-8-硫醇和1,3,5-噻二嗪烷-2-硫酮——没有荧光,并在LDR细胞中再次确认了活性。这三个活性系列在核提取物中不抑制组蛋白脱乙酰酶活性,也不在癌细胞中重新激活高度甲基化的p16基因的表达。然而,一个系列在亚微摩尔浓度下诱导甲基化的CDH13基因表达并抑制几种肺癌细胞系的活力。这些结果表明,所鉴定的小分子作用于表观遗传或转录成分,并验证了我们将基于细胞的成像分析与qHTS结合使用的方法。

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