Tang Donge, Dai Yong, Xu Songhui
Research Center of Medical Sciences, Guangdong Provincial People's Hospital, Guangdong Academy of Medical Sciences, Guangzhou, China.
Department of Clinical Medical Research Center, The Second Clinical Medical College of Jinan University, The First Affiliated Hospital Southern University of Science and Technology, Shenzhen People's Hospital, Shenzhen, Guangdong, China.
Cancer Res. 2021 Oct 13. doi: 10.1158/0008-5472.CAN-21-1825.
The histone demethylase KDM6A controls gene expression by the epigenetic regulation of H3K27 methylation and functions in diverse processes, including differentiation, development, and cancer. Here, we investigated the role of KDM6A in prostate cancer. Specific deletion of KDM6A in the adult mouse prostate epithelium strongly inhibited tumor progression initiated by the loss of PTEN. Mechanistically, KDM6A promoted prostate tumorigenesis and lipid metabolism by binding to the SREBP1c promoter to increase SREBP1c transcription. USP7 deubiquitinated KDM6A to increase its expression. KDM6A was significantly upregulated in prostate cancer and positively associated with USP7 expression. Furthermore, targeting KDM6A stability by inhibiting USP7 in conditional knockout mice and xenograft models markedly suppressed prostate cancer growth and significantly enhanced KDM6A inhibitor efficacy. Collectively, these findings indicate that KDM6A regulates prostate lipid metabolism and is essential for prostate tumorigenesis initiated by PTEN loss. Targeting USP7/KDM6A could be a valuable strategy to ameliorate prostate cancer progression and therapeutic resistance. SIGNIFICANCE: These findings show that KDM6A supports prostate tumorigenesis by promoting SREBP1c-mediated lipid metabolism, proposing targeting the USP7/KDM6A axis as a therapeutic strategy for treating prostate cancer.
组蛋白去甲基化酶KDM6A通过对H3K27甲基化的表观遗传调控来控制基因表达,并在包括分化、发育和癌症在内的多种过程中发挥作用。在此,我们研究了KDM6A在前列腺癌中的作用。在成年小鼠前列腺上皮细胞中特异性缺失KDM6A可强烈抑制由PTEN缺失引发的肿瘤进展。从机制上讲,KDM6A通过与SREBP1c启动子结合以增加SREBP1c转录,从而促进前列腺肿瘤发生和脂质代谢。USP7使KDM6A去泛素化以增加其表达。KDM6A在前列腺癌中显著上调,且与USP7表达呈正相关。此外,在条件性敲除小鼠和异种移植模型中通过抑制USP7来靶向KDM6A的稳定性,可显著抑制前列腺癌生长,并显著增强KDM6A抑制剂的疗效。总的来说,这些发现表明KDM6A调节前列腺脂质代谢,并且对于由PTEN缺失引发的前列腺肿瘤发生至关重要。靶向USP7/KDM6A可能是改善前列腺癌进展和治疗抗性的一种有价值的策略。意义:这些发现表明KDM6A通过促进SREBP1c介导的脂质代谢来支持前列腺肿瘤发生,提出将靶向USP7/KDM6A轴作为治疗前列腺癌的一种治疗策略。