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p53 的 β-羟基丁酰化会削弱其活性。

p53 β-hydroxybutyrylation attenuates p53 activity.

机构信息

Department of Biochemistry and Molecular Biology, Beijing Key Laboratory of Protein Posttranslational Modifications and Cell Function, Peking University Health Science Center, 38 Xueyuan Road, 100191, Beijing, China.

Department of Biomedical Informatics, Beijing Key Laboratory of Protein Posttranslational Modifications and Cell Function, Peking University Health Science Center, 38 Xueyuan Road, 100191, Beijing, China.

出版信息

Cell Death Dis. 2019 Mar 11;10(3):243. doi: 10.1038/s41419-019-1463-y.

Abstract

p53 is an essential tumor suppressor, whose activity is finely tuned by the posttranslational modifications. Previous research has reported that β-hydroxybutyrate (BHB) induces β-hydroxybutyrylation (Kbhb), which is a novel histone posttranslational modification. Here we report that p53 is modified by kbhb and that this modification occurs at lysines 120, 319, and 370 of p53. We demonstrate that the level of p53 kbhb is dramatically increased in cultured cells treated with BHB and in thymus tissues of fasted mice, and that CBP catalyze p53 kbhb. We show that p53 kbhb results in lower levels of p53 acetylation and reduced expression of the p53 downstream genes p21 and PUMA, as well as reduced cell growth arrest and apoptosis in cultured cells under p53-activating conditions. Similar results were observed in mouse thymus tissue under starvation conditions, which result in increased concentrations of serum BHB, and in response to genotoxic stress caused by γ-irradiation to activate p53. Our findings thus show that BHB-mediated p53 kbhb is a novel mechanism of p53 activity regulation, which may explain the link between ketone bodies and tumor, and which may provide promising therapeutic target for cancer treatment.

摘要

p53 是一种重要的肿瘤抑制因子,其活性受到翻译后修饰的精细调节。先前的研究报告称,β-羟丁酸(BHB)诱导β-羟丁酸化(Kbhb),这是一种新的组蛋白翻译后修饰。在这里,我们报告 p53 被 kbhb 修饰,并且这种修饰发生在 p53 的赖氨酸 120、319 和 370 上。我们证明,在用 BHB 处理的培养细胞中和禁食小鼠的胸腺组织中,p53 kbhb 的水平显著增加,并且 CBP 催化 p53 kbhb。我们表明,p53 kbhb 导致 p53 乙酰化水平降低,p53 下游基因 p21 和 PUMA 的表达减少,并且在 p53 激活条件下培养细胞中的细胞生长停滞和凋亡减少。在饥饿条件下的小鼠胸腺组织中观察到类似的结果,这导致血清 BHB 浓度增加,并对 γ 辐射引起的遗传毒性应激做出反应以激活 p53。因此,我们的研究结果表明,BHB 介导的 p53 kbhb 是 p53 活性调节的一种新机制,它可能解释了酮体与肿瘤之间的联系,并为癌症治疗提供了有前途的治疗靶点。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/c83e/6411878/f7e99b05c323/41419_2019_1463_Fig1_HTML.jpg

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