4.5 Article

Epigenetic Silencing of CHOP Expression by the Histone Methyltransferase EHMT1 Regulates Apoptosis in Colorectal Cancer Cells

Journal

MOLECULES AND CELLS
Volume 45, Issue 9, Pages 622-630

Publisher

KOREAN SOC MOLECULAR & CELLULAR BIOLOGY
DOI: 10.14348/molcells.2022.0014

Keywords

apoptosis; C/EBP homologous protein; colorectal cancer; euchromatic histone-lysine N-methyltransferase 1

Funding

  1. Ministry of Trade, Industry & Energy (MOTIE, Korea) [20008777]
  2. National Research Foundation of Korea (NRF) - Ministry of Science, ICT, and Future Planning [NRF-2020R1A2B5B01002028, NRF-2018M3A9H3023077, NRF-2021M3A9H3016046]
  3. Korean Fund for Regenerative Medicine (KFRM) - Korean government (the Ministry of Science and ICT)
  4. KRIBB Research Initiative Program
  5. Ministry of Health Welfare [21A0404L1]
  6. Korea Evaluation Institute of Industrial Technology (KEIT) [20008777] Funding Source: Korea Institute of Science & Technology Information (KISTI), National Science & Technology Information Service (NTIS)

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This study identified EHMT1 as an overexpressed gene in colorectal cancer (CRC) and demonstrated that knocking down EHMT1 expression suppressed cell growth and induced apoptosis in CRC cell lines. Further analysis revealed that EHMT1 regulates cell apoptosis through the CHOP gene. These findings suggest EHMT1 as a potential therapeutic target for CRC treatment.
Colorectal cancer (CRC) has a high mortality rate among cancers worldwide. To reduce this mortality rate, chemotherapy (5-fluorouracil, oxaliplatin, and irinotecan) or targeted therapy (bevacizumab, cetuximab, and panitumumab) has been used to treat CRC. However, due to various side effects and poor responses to CRC treatment, novel therapeutic targets for drug development are needed. In this study, we identified the overexpression of EHMT1 in CRC using RNA sequencing (RNA-seq) data derived from TCGA, and we observed that knocking down EHMT1 expression suppressed cell growth by inducing cell apoptosis in CRC cell lines. In Gene Ontology (GO) term analysis using RNA-seq data, apoptosis-related terms were enriched after EHMT1 knockdown. Moreover, we identified the CHOP gene as a direct target of EHMT1 using a ChIP (chromatin immunoprecipitation) assay with an anti-histone 3 lysine 9 dimethylation (H3K9me2) antibody. Finally, after cotransfection with siEHMT1 and siCHOP, we again confirmed that CHOP-mediated cell apoptosis was induced by EHMT1 knockdown. Our findings reveal that EHMT1 plays a key role in regulating CRC cell apoptosis, suggesting that EHMT1 may be a therapeutic target for the development of cancer inhibitors.

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