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使用闪烁微孔板(FlashPlate)进行高通量筛选以鉴定组蛋白乙酰转移酶的小分子抑制剂。

High-throughput screening for identification of small molecule inhibitors of histone acetyltransferases using scintillating microplates (FlashPlate).

作者信息

Turlais F, Hardcastle A, Rowlands M, Newbatt Y, Bannister A, Kouzarides T, Workman P, Aherne G W

机构信息

CRC Centre for Cancer Therapeutics, Institute of Cancer Research, Sutton, Surrey, SM2 5NG, United Kingdom.

出版信息

Anal Biochem. 2001 Nov 1;298(1):62-8. doi: 10.1006/abio.2001.5340.

Abstract

The role of histone acetyltransferases (HATs) in the regulation of crucial cellular functions, e.g., gene transcription, differentiation, and proliferation, has recently been documented and there is increasing evidence that aberrant expression of these enzymes may have a role to play in the development of the malignant phenotype. The availability of potent and selective small molecule inhibitors of HATs would provide useful proof of principle probes for further validation of these enzymes as drug discovery targets and may also provide lead molecules for clinical drug development. We have developed a microplate assay for HAT activity suitable for high-throughput screening. In the assay, following incubation of histone H3, [3H]acetylCoA, and enzyme (recombinant p300/CBP-associated factor expressed as a glutathione S-transferase fusion protein), radiolabeled histone was captured onto the walls of a scintillating microplate (FlashPlate) generating a scintillation signal. The assay was reproducible, amenable to automation, and generated a wide signal to noise ratio. Although antiacetylated histone antibodies were initially used to capture the radiolabeled product, it was subsequently shown that a signal was effectively produced by histone passively binding to the walls of the FlashPlate. This resulted in a simple "mix and measure" assay that is currently being used for the identification of HAT inhibitors.

摘要

组蛋白乙酰转移酶(HATs)在调控关键细胞功能(如基因转录、分化和增殖)中的作用,近来已有文献记载,而且越来越多的证据表明,这些酶的异常表达可能在恶性表型的发展中起作用。强效且具有选择性的HAT小分子抑制剂的出现,将为进一步验证这些酶作为药物发现靶点提供有用的原理性探针,也可能为临床药物开发提供先导分子。我们开发了一种适用于高通量筛选的HAT活性微孔板检测方法。在该检测中,将组蛋白H3、[3H]乙酰辅酶A和酶(作为谷胱甘肽S-转移酶融合蛋白表达的重组p300/CBP相关因子)孵育后,放射性标记的组蛋白被捕获到闪烁微孔板(FlashPlate)的孔壁上,产生闪烁信号。该检测方法具有可重复性,适合自动化操作,并且产生的信噪比很高。虽然最初使用抗乙酰化组蛋白抗体来捕获放射性标记产物,但随后发现,组蛋白被动结合到FlashPlate孔壁上能有效产生信号。这就形成了一种简单的“混合并测量”检测方法,目前正用于HAT抑制剂的鉴定。

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