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I类组蛋白去乙酰化酶中新的亚型选择性抑制剂的鉴定

Identification of novel isoform-selective inhibitors within class I histone deacetylases.

作者信息

Hu Erding, Dul Edward, Sung Chiu-Mei, Chen Zunxuan, Kirkpatrick Robert, Zhang Gui-Feng, Johanson Kyung, Liu Ronggang, Lago Amparo, Hofmann Glenn, Macarron Ricardo, de los Frailes Maite, Perez Paloma, Krawiec John, Winkler James, Jaye Michael

机构信息

Department of Vascular Biology, GlaxoSmithKline, Rm. 25-1084, 709 Swedeland Road, King of Prussia, PA 19406, USA.

出版信息

J Pharmacol Exp Ther. 2003 Nov;307(2):720-8. doi: 10.1124/jpet.103.055541. Epub 2003 Sep 15.

Abstract

Histone deacetylases (HDACs) represent an expanding family of protein modifying-enzymes that play important roles in cell proliferation, chromosome remodeling, and gene transcription. We have previously shown that recombinant human HDAC8 can be expressed in bacteria and retain its catalytic activity. To further explore the catalytic activity of HDACs, we expressed two additional human class I HDACs, HDAC1 and HDAC3, in baculovirus. Recombinant HDAC1 and HDAC3 fusion proteins remained soluble and catalytically active and were purified to near homogeneity. Interestingly, trichostatin (TSA) was found to be a potent inhibitor for all three HDACs (IC50 value of approximately 0.1-0.3 microM), whereas another HDAC inhibitor MS-27-275 (N-(2-aminophenyl)-4-[N-(pyridin-3-methyloxycarbonyl)-aminomethyl]benzamide) preferentially inhibited HDAC1 (IC50 value of approximately 0.3 microM) versus HDAC3 (IC50 value of approximately 8 microM) and had no inhibitory activity toward HDAC8 (IC50 value >100 microM). MS-27-275 as well as TSA increased histone H4 acetylation, induced apoptosis in the human colon cancer cell line SW620, and activated the simian virus 40 early promoter. HDAC1 protein was more abundantly expressed in SW620 cells compared with that of HDAC3 and HDAC8. Using purified recombinant HDAC proteins, we identified several novel HDAC inhibitors that preferentially inhibit HDAC1 or HDAC8. These inhibitors displayed distinct properties in inducing histone acetylation and reporter gene expression. These results suggest selective HDAC inhibitors could be identified using recombinantly expressed HDACs and that HDAC1 may be a promising therapeutic target for designing HDAC inhibitors for proliferative diseases such as cancer.

摘要

组蛋白去乙酰化酶(HDACs)是一类不断扩展的蛋白质修饰酶家族,在细胞增殖、染色体重塑和基因转录中发挥重要作用。我们之前已经表明,重组人HDAC8能够在细菌中表达并保留其催化活性。为了进一步探索HDACs的催化活性,我们在杆状病毒中表达了另外两种人类I类HDACs,即HDAC1和HDAC3。重组HDAC1和HDAC3融合蛋白保持可溶且具有催化活性,并被纯化至接近均一性。有趣的是,曲古抑菌素(TSA)被发现是这三种HDACs的有效抑制剂(IC50值约为0.1 - 0.3微摩尔),而另一种HDAC抑制剂MS - 27 - 275(N - (2 - 氨基苯基)-4 - [N - (吡啶 - 3 - 甲氧基羰基)-氨基甲基]苯甲酰胺)相对于HDAC3(IC50值约为8微摩尔)更优先抑制HDAC1(IC50值约为0.3微摩尔),并且对HDAC8没有抑制活性(IC50值>100微摩尔)。MS - 27 - 275以及TSA增加了组蛋白H4的乙酰化,诱导人结肠癌细胞系SW620凋亡,并激活了猿猴病毒40早期启动子。与HDAC3和HDAC8相比,HDAC1蛋白在SW620细胞中表达更为丰富。使用纯化的重组HDAC蛋白,我们鉴定出了几种优先抑制HDAC1或HDAC8的新型HDAC抑制剂。这些抑制剂在诱导组蛋白乙酰化和报告基因表达方面表现出不同的特性。这些结果表明,可以使用重组表达的HDACs鉴定出选择性HDAC抑制剂,并表明HDAC1可能是设计用于治疗诸如癌症等增殖性疾病的HDAC抑制剂的有前景的治疗靶点。

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