表观遗传学
生物
癌变
癌症研究
效应器
泛素
抑制器
组蛋白
计算生物学
变构调节
细胞生物学
信号转导
基因表达调控
调解人
小RNA
支架蛋白
RNA干扰
平方毫米
下调和上调
溴尿嘧啶
遗传学
前列腺癌
生物信息学
核糖核酸
癌症
作者
Wenjie Zeng,Keke Xu,Yu Wang,Yi Shou,Hao Xiong,Lanqing Liang,Hong'en Xu,Ruiqi Liu,Haibo Zhang,Yanwei Lu
摘要
The tripartite motif-containing protein 24 (TRIM24) functions as a pivotal epigenetic scaffold and E3 ubiquitin ligase, orchestrating tumorigenesis through context-dependent dual roles. While frequently amplified in cancers such as prostate and breast carcinoma-where it drives oncogenesis via Wnt/β-catenin and PI3K/AKT pathway activation-emerging evidence positions TRIM24 as a tumor suppressor in specific contexts, modulating retinoic acid signaling and macrophage polarization. This dichotomy is governed by intricate post-translational modifications (PTMs), including phosphorylation-dependent nucleocytoplasmic shuttling and SUMOylation, which dictate substrate specificity for targets ranging from p53 to VHL. Furthermore, TRIM24 operates within a complex non-coding RNA network (e.g., miRNA-511, lncRNA NCK1-AS1) that fine-tunes its oncogenic output. Clinically, aberrant TRIM24 expression correlates with poor prognosis and therapeutic resistance across multiple malignancies. Mechanistically, its unique PHD-Bromo dual-domain structure confers specific recognition of the noncanonical H3K4me0/H3K23ac histone signature, presenting a compelling therapeutic target. Current strategies, including PROTAC degraders and allosteric inhibitors targeting its bromodomain or downstream effectors (e.g., DNA-PKcs, AURKB), demonstrate significant preclinical efficacy. This review synthesizes the molecular circuitry of TRIM24, elucidates the determinants of its functional switch, and evaluates emerging precision medicine approaches to overcome resistance in TRIM24-addicted tumors.
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