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HDAC5 deacetylates c-Myc and facilitates cell cycle progression in hepatocellular carcinoma cells.
Lin, Min; Zhou, Weihua; Wang, Yizhang; Ye, Jiangwei; Jiang, TingJia; Han, Shanshan; Zhu, Fengjiao; Ye, Ming; Fang, Zejun.
Afiliación
  • Lin M; Central Laboratory, Sanmen People's Hospital, Sanmen 317100, China. Electronic address: linmin1@zjsmyy.com.
  • Zhou W; Department of Pathology, Sanmen People's Hospital, Sanmen 317100, China. Electronic address: zhouweihua@zjsmyy.com.
  • Wang Y; Central Laboratory, Sanmen People's Hospital, Sanmen 317100, China. Electronic address: wangyizhang@zjsmyy.com.
  • Ye J; Department of General Surgery, Sanmen People's Hospital, No. 15 Taihe Road, Hairun Street, Sanmen 317100, China. Electronic address: yejiangwei@zjsmyy.com.
  • Jiang T; Department of Pathology, Sanmen People's Hospital, Sanmen 317100, China. Electronic address: jiangtingjia@zjsmyy.com.
  • Han S; Central Laboratory, Sanmen People's Hospital, Sanmen 317100, China. Electronic address: hanshanshan@zjsmyy.com.
  • Zhu F; Central Laboratory, Sanmen People's Hospital, Sanmen 317100, China. Electronic address: zhufengjiao@zjsmyy.com.
  • Ye M; Department of General Surgery, Sanmen People's Hospital, No. 15 Taihe Road, Hairun Street, Sanmen 317100, China. Electronic address: yeming@zjsmyy.com.
  • Fang Z; Central Laboratory, Sanmen People's Hospital, Sanmen 317100, China. Electronic address: fangzejun@zjsmyy.com.
Cell Signal ; 124: 111386, 2024 Sep 06.
Article en En | MEDLINE | ID: mdl-39243916
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.
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Texto completo: 1 Colección: 01-internacional Base de datos: MEDLINE Idioma: En Revista: Cell Signal Año: 2024 Tipo del documento: Article Pais de publicación: Reino Unido

Texto completo: 1 Colección: 01-internacional Base de datos: MEDLINE Idioma: En Revista: Cell Signal Año: 2024 Tipo del documento: Article Pais de publicación: Reino Unido