USP20 as a super-enhancer-regulated gene drives T-ALL progression via HIF1A deubiquitination.

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作者:Xu Ling, Zhang Zimu, Yu Juanjuan, Ji Tongting, Cheng Jia, Fei Xiaodong, Chu Xinran, Tao Yanfang, Xu Yan, Yang Pengju, Liu Wenyuan, Li Gen, Zhang Yongping, Li Yan, Zhang Fenli, Yang Ying, Zhou Bi, Wu Yumeng, Wei Zhongling, Chen Yanling, Wang Jianwei, Wu Di, Li Xiaolu, Yang Yang, Qian Guanghui, Yin Hongli, Wu Shuiyan, Zhang Shuqi, Liu Dan, Fan Jun-Jie, Shi Lei, Wang Xiaodong, Hu Shaoyan, Lu Jun, Pan Jian
T-cell acute lymphoblastic leukemia (T-ALL) is a highly aggressive hematologic malignancy with a poor prognosis, despite advancements in treatment. Many patients struggle with relapse or refractory disease. Investigating the role of the super-enhancer (SE) regulated gene ubiquitin-specific protease 20 (USP20) in T-ALL could enhance targeted therapies and improve clinical outcomes. Analysis of histone H3 lysine 27 acetylation (H3K27ac) chromatin immunoprecipitation sequencing (ChIP-seq) data from six T-ALL cell lines and seven pediatric samples identified USP20 as an SE-regulated driver gene. Utilizing the Cancer Cell Line Encyclopedia (CCLE) and BloodSpot databases, it was found that USP20 is specifically highly expressed in T-ALL. Knocking down USP20 with short hairpin RNA (shRNA) increased apoptosis and inhibited proliferation in T-ALL cells. In vivo studies showed that USP20 knockdown reduced tumor growth and improved survival. The USP20 inhibitor GSK2643943A demonstrated similar anti-tumor effects. Mass spectrometry, RNA-Seq, and immunoprecipitation revealed that USP20 interacted with hypoxia-inducible factor 1 subunit alpha (HIF1A) and stabilized it by deubiquitination. Cleavage under targets and tagmentation (CUT&Tag) results indicated that USP20 co-localized with HIF1A, jointly modulating target genes in T-ALL. This study identifies USP20 as a therapeutic target in T-ALL and suggests GSK2643943A as a potential treatment strategy.

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