1. Academic Validation
  2. SETD1A drives stemness by reprograming epigenetic landscape in hepatocellular carcinoma stem cells

SETD1A drives stemness by reprograming epigenetic landscape in hepatocellular carcinoma stem cells

  • JCI Insight. 2023 Aug 15;e168375. doi: 10.1172/jci.insight.168375.
Jianxu Chen 1 Zhijie Xu 1 Hongbin Huang 1 Yao Tang 1 Hong Shan 1 Fei Xiao 1
Affiliations

Affiliation

  • 1 Guangdong Provincial Engineering Research Center of Molecular Imaging, The Fifth Affiliated Hospital of Sun Yat-Sen University, Zhuhai, China.
Abstract

Cancer Stem Cells (CSCs) are responsible for tumor progression and recurrence. However, the mechanisms regulating hepatocellular carcinoma (HCC) stemness remain unclear. Applying a genome-scale CRISPR knockout screen, we identify that the H3K4 methyltransferase SETD1A and other members of Trithorax group proteins drive Cancer stemness in HCC. SETD1A is positively correlated with poor clinical outcome in HCC patients. Combination of SETD1A and serum AFP significantly improves the accuracy of predicting HCC relapse. Mechanistically, SETD1A mediates transcriptional activation of various histone-modifying enzymes, facilitates deposition of H3K4me3 and H3K27me3 and activates oncogenic enhancers and super-enhancers, leading to activation of oncogenes and inactivation of tumor suppressor genes simultaneously in HCC CSCs. In addition, SETD1A cooperates with PABPC1 to regulate H3K4me3 modification on oncogenes. Our data pinpoint SETD1A as a key epigenetic regulator driving HCC stemness and progression, highlighting the potential of SETD1A as a candidate target for HCC intervention and therapy.

Keywords

Epigenetics; Hepatology; Liver cancer; Oncogenes; Oncology.

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