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组蛋白去乙酰化酶 5 去乙酰化 c-Myc 并促进肝癌细胞的细胞周期进程。

HDAC5 deacetylates c-Myc and facilitates cell cycle progression in hepatocellular carcinoma cells.

机构信息

Central Laboratory, Sanmen People's Hospital, Sanmen 317100, China.

Department of Pathology, Sanmen People's Hospital, Sanmen 317100, China.

出版信息

Cell Signal. 2024 Dec;124:111386. doi: 10.1016/j.cellsig.2024.111386. Epub 2024 Sep 6.

Abstract

Histone deacetylase 5 (HDAC5) is an enzyme that deacetylates lysine residues on the N-terminal of histones and other proteins. It has been reported that HDAC5 deacetylates p53, the critical factor regulating cell cycle, in response to cellular stress, but the transcriptional products haven't been identified. Herein, we used p53 signaling pathway qPCR-chip to determine how HDAC5-mediated deacetylation of p53 affects cell cycle. However, validation using immunoblotting analysis revealed that acetylation of p53 at K120 impacted little to the expression of the genes identified using the qPCR-chip, indicating HDAC5 might deacetylate some other proteins to facilitate cell cycle via transactivating the differentially expressed genes determined by the qPCR-chip. The subsequent assays demonstrated that HDAC5 deacetylated c-Myc at K143 and K157 to facilitate the transactivation of CDK1, CDK4, and CDC25C, promoting cell cycle progression of hepatocellular carcinoma (HCC). This study shows that HDAC5 plays important roles in modulating deacetylation of c-Myc and regulating cell cycle progression, and it proves that LMK-235, the inhibitor targeting HDAC5 potentially serves as a drug for combating HCC via promoting acetylation of c-Myc at K143 and K157.

摘要

组蛋白去乙酰化酶 5(HDAC5)是一种能够使组蛋白和其他蛋白质 N 端赖氨酸残基去乙酰化的酶。已有报道称,HDAC5 可使细胞周期调控关键因子 p53 在细胞应激时去乙酰化,但尚未鉴定其转录产物。在此,我们使用 p53 信号通路 qPCR 芯片来确定 HDAC5 介导的 p53 去乙酰化如何影响细胞周期。然而,免疫印迹分析的验证结果表明,p53 在 K120 处的乙酰化对 qPCR 芯片鉴定的基因表达影响不大,这表明 HDAC5 可能通过激活 qPCR 芯片鉴定的差异表达基因来促进细胞周期,从而使其他一些蛋白质去乙酰化。随后的实验表明,HDAC5 使 c-Myc 在 K143 和 K157 处去乙酰化,以促进 CDK1、CDK4 和 CDC25C 的转录激活,从而促进肝癌(HCC)细胞周期的进行。本研究表明,HDAC5 在调节 c-Myc 的去乙酰化和调控细胞周期进展方面发挥重要作用,并证明靶向 HDAC5 的抑制剂 LMK-235 通过促进 c-Myc 在 K143 和 K157 处的乙酰化,有望成为治疗 HCC 的药物。

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