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水杨酸盐、二氟尼柳及其代谢产物可抑制CBP/p300并具有抗癌活性。

Salicylate, diflunisal and their metabolites inhibit CBP/p300 and exhibit anticancer activity.

作者信息

Shirakawa Kotaro, Wang Lan, Man Na, Maksimoska Jasna, Sorum Alexander W, Lim Hyung W, Lee Intelly S, Shimazu Tadahiro, Newman John C, Schröder Sebastian, Ott Melanie, Marmorstein Ronen, Meier Jordan, Nimer Stephen, Verdin Eric

机构信息

Gladstone Institutes, University of California, San Francisco, United States.

Department of Medicine, University of California, San Francisco, United States.

出版信息

Elife. 2016 May 31;5:e11156. doi: 10.7554/eLife.11156.

Abstract

Salicylate and acetylsalicylic acid are potent and widely used anti-inflammatory drugs. They are thought to exert their therapeutic effects through multiple mechanisms, including the inhibition of cyclo-oxygenases, modulation of NF-κB activity, and direct activation of AMPK. However, the full spectrum of their activities is incompletely understood. Here we show that salicylate specifically inhibits CBP and p300 lysine acetyltransferase activity in vitro by direct competition with acetyl-Coenzyme A at the catalytic site. We used a chemical structure-similarity search to identify another anti-inflammatory drug, diflunisal, that inhibits p300 more potently than salicylate. At concentrations attainable in human plasma after oral administration, both salicylate and diflunisal blocked the acetylation of lysine residues on histone and non-histone proteins in cells. Finally, we found that diflunisal suppressed the growth of p300-dependent leukemia cell lines expressing AML1-ETO fusion protein in vitro and in vivo. These results highlight a novel epigenetic regulatory mechanism of action for salicylate and derivative drugs.

摘要

水杨酸盐和乙酰水杨酸是强效且广泛使用的抗炎药物。它们被认为通过多种机制发挥治疗作用,包括抑制环氧化酶、调节核因子κB(NF-κB)活性以及直接激活腺苷酸活化蛋白激酶(AMPK)。然而,它们的全部活性谱尚未完全被了解。在此我们表明,水杨酸盐在体外通过在催化位点与乙酰辅酶A直接竞争,特异性抑制CBP和p300赖氨酸乙酰转移酶活性。我们使用化学结构相似性搜索来鉴定另一种抗炎药物双氟尼酸,其对p300的抑制作用比水杨酸盐更强。在口服给药后人体血浆可达到的浓度下,水杨酸盐和双氟尼酸均可阻断细胞中组蛋白和非组蛋白上赖氨酸残基的乙酰化。最后,我们发现双氟尼酸在体外和体内均抑制表达AML1-ETO融合蛋白的p300依赖性白血病细胞系的生长。这些结果突出了水杨酸盐及其衍生药物一种新的表观遗传调节作用机制。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/a837/4931907/9ba1b5f9d011/elife-11156-fig1.jpg

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