Li Jin-Tao, Li Kai-Yue, Su Ying, Shen Yuan, Lei Ming-Zhu, Zhang Fan, Yin Miao, Chen Zheng-Jun, Wen Wen-Yu, Hu Wei-Guo, Su Dan, Qu Jia, Lei Qun-Ying
Fudan University Shanghai Cancer Center and Institutes of Biomedical Sciences; Cancer Institutes; Key Laboratory of Breast Cancer in Shanghai; Shanghai Key Laboratory of Medical Epigenetics; International Co-Laboratory of Medical Epigenetics and Metabolism, Ministry of Science and Technology, Shanghai Medical College, Fudan University, Shanghai 200032, China.
State Key Laboratory of Cell Biology, Shanghai Institute of Biochemistry and Cell Biology, Center for Excellence in Molecular Cell Science, Chinese Academy of Sciences, Shanghai 200031, China.
Natl Sci Rev. 2021 Nov 26;9(5):nwab212. doi: 10.1093/nsr/nwab212. eCollection 2022 May.
BCAT2-mediated branched-chain amino acid (BCAA) catabolism is critical for pancreatic ductal adenocarcinoma (PDAC) development, especially at an early stage. However, whether a high-BCAA diet promotes PDAC development , and the underlying mechanism of BCAT2 upregulation, remain undefined. Here, we find that a high-BCAA diet promotes pancreatic intraepithelial neoplasia (PanIN) progression in ; (KC) mice. Moreover, we screened with an available deubiquitylase library which contains 31 members of USP family and identified that USP1 deubiquitylates BCAT2 at the K229 site. Furthermore, BCAA increases USP1 protein at the translational level via the GCN2-eIF2α pathway both and . More importantly, USP1 inhibition recedes cell proliferation and clone formation in PDAC cells and attenuates pancreas tumor growth in an orthotopic transplanted mice model. Consistently, a positive correlation between USP1 and BCAT2 is found in KC; ; ; mice and clinical samples. Thus, a therapeutic targeting USP1-BCAT2-BCAA metabolic axis could be considered as a rational strategy for treatment of PDAC and precisive dietary intervention of BCAA has potentially translational significance.
BCAT2介导的支链氨基酸(BCAA)分解代谢对胰腺导管腺癌(PDAC)的发展至关重要,尤其是在早期阶段。然而,高BCAA饮食是否会促进PDAC的发展以及BCAT2上调的潜在机制仍不明确。在此,我们发现高BCAA饮食会促进KrasG12D/+;Pdx1-Cre(KC)小鼠的胰腺上皮内瘤变(PanIN)进展。此外,我们用一个包含31个USP家族成员的去泛素化酶文库进行筛选,确定USP1在K229位点使BCAT2去泛素化。此外,BCAA在体内和体外均通过GCN2-eIF2α途径在翻译水平上增加USP1蛋白。更重要的是,在原位移植小鼠模型中,USP1抑制可减少PDAC细胞的增殖和克隆形成,并减弱胰腺肿瘤生长。一致地,在KC;LSL-KrasG12D/+;Pdx1-Cre;Trp53fl/fl小鼠和临床样本中发现USP1与BCAT2呈正相关。因此,靶向USP1-BCAT2-BCAA代谢轴的治疗可被视为治疗PDAC的合理策略,而对BCAA进行精准饮食干预可能具有转化意义。