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丁酰化遇见脂肪生成——由 p300 催化的酰化特异性小分子抑制剂探测:在抗肥胖治疗中的应用。

Butyrylation Meets Adipogenesis-Probed by a p300-Catalyzed Acylation-Specific Small Molecule Inhibitor: Implication in Anti-obesity Therapy.

机构信息

Transcription and Disease Laboratory, Molecular Biology and Genetics Unit, Jawaharlal Nehru Centre for Advanced Scientific Research, Bangalore 560064, India.

Chromatin Biology Laboratory, Molecular Biology and Genetics Unit, Jawaharlal Nehru Centre for Advanced Scientific Research, Bangalore 560064, India.

出版信息

J Med Chem. 2022 Sep 22;65(18):12273-12291. doi: 10.1021/acs.jmedchem.2c00943. Epub 2022 Sep 8.

Abstract

The enzyme p300, besides having acetyltransferase activity, can also catalyze other acylation modifications, whose physiological implications are still being investigated. Here, we report that the level of histone butyrylation increases globally as well as locally in the promoters of pro-adipogenic genes during adipogenesis. To delineate the role of p300-catalyzed butyrylation from acetylation in adipogenesis, we identified a semisynthetic derivative (LTK-14A) of garcinol, which specifically inhibited histone butyrylation without affecting acetylation. Treatment of 3T3L1 cells with LTK-14A abolished adipogenesis with downregulation of pro-adipogenic genes along with inhibition of H4K5 butyrylation. Administering LTK-14A to high-fat diet-fed and genetically obese db/db mice led to attenuation/decrease in their weight gain. The reduced obesity could be partially attributed to the inhibition of H4K5 butyrylation in adipocytes and liver. This report therefore not only, for the first time, causally links histone butyrylation with adipogenesis but also presents a probable candidate for anti-obesity therapeutics.

摘要

除了具有乙酰转移酶活性外,酶 p300 还可以催化其他酰化修饰,其生理意义仍在研究中。在这里,我们报告在脂肪生成过程中,脂肪生成基因启动子中的组蛋白丁酰化水平整体以及局部增加。为了阐明 p300 催化的丁酰化在脂肪生成中的作用与乙酰化的区别,我们鉴定了 garcinol 的半合成衍生物(LTK-14A),它特异性地抑制组蛋白丁酰化而不影响乙酰化。用 LTK-14A 处理 3T3L1 细胞可阻止脂肪生成,下调前脂肪生成基因,并抑制 H4K5 丁酰化。向高脂肪饮食喂养和遗传性肥胖 db/db 小鼠给予 LTK-14A 可导致其体重增加减少/减轻。肥胖的减少部分归因于脂肪细胞和肝脏中 H4K5 丁酰化的抑制。因此,本报告不仅首次将组蛋白丁酰化与脂肪生成联系起来,而且还提出了一种潜在的抗肥胖治疗候选药物。

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