脂质代谢
下调和上调
细胞外基质
生物
癌症研究
转录因子
转录组
细胞生物学
肝细胞癌
代谢途径
生物化学
新陈代谢
基因表达
基因
作者
Jingjing Cai,Tianyi Chen,Zhiyu Jiang,Jing Yan,Zhengtao Ye,Yeling Ruan,Liye Tao,Zefeng Shen,Xiao Liang,Yifan Wang,Jing Xu,Xiujun Cai
摘要
Emerging studies have revealed matrix stiffness promotes hepatocellular carcinoma (HCC) development. We studied metabolic dysregulation in HCC using the TCGA-LIHC database (n=374) and GEO datasets (GSE14520). HCC samples were classified into three heterogeneous metabolic pathway subtypes with different metabolic profiles: Cluster 1, an ECM-producing subtype with upregulated glycan metabolism; Cluster 2, a hybrid subtype with partial pathway dysregulation. Cluster 3, a lipogenic subtype with upregulated lipid metabolism; These three subtypes have different prognosis, clinical features and genomic alterations. We identified key enzymes that respond to matrix stiffness and regulate lipid metabolism through bioinformatic analysis. We found long-chain acyl-CoA dehydrogenase (ACADL) is a mechanoreactive enzyme that reprograms HCC cell lipid metabolism in response to extracellular matrix stiffness. ACADL is also regarded as tumor suppressor in HCC. We found that increased extracellular matrix stiffness led to activation of Yes-associated protein (YAP) and the YAP/TEA Domain transcription factor 4 (TEAD4) transcriptional complex was able to directly repress ACADL at the transcriptional level. The ACADL-dependent mechanoresponsive pathway is a potential therapeutic target for HCC treatment.
科研通智能强力驱动
Strongly Powered by AbleSci AI