CDCA7 Promotes Proliferation and Suppresses Apoptosis in Gastric Cancer via HELLS-Mediated Chromatin Remodeling

Jun Jiang1, Yi-Ran Li2, Xiaoting Wang3

  • 1Endoscopy Center, Minhang Hospital, Fudan University, No. 170 Xinsong Road, Shanghai, China.

Oncology Research
|May 1, 2026
PubMed
Abstract

Insights

Cell division cycle-associated 7 (CDCA7) promotes gastric cancer (GC) progression by interacting with HELLS to regulate DNA methylation and chromatin stability. This CDCA7-HELLS axis presents a potential diagnostic biomarker and therapeutic target for GC.

Area of Science:

  • Molecular Oncology
  • Epigenetics
  • Gastric Cancer Research

Background:

  • Cell division cycle-associated 7 (CDCA7) is implicated in chromatin remodeling and DNA methylation in various cancers.
  • The specific roles and regulatory mechanisms of CDCA7 in gastric cancer (GC) progression are not well understood.
  • This study investigates the function of CDCA7 in GC and its epigenetic regulatory pathways.

Purpose of the Study:

  • To identify the function of CDCA7 in gastric cancer progression.
  • To elucidate the epigenetic regulatory mechanisms involving CDCA7 in GC.
  • To explore the potential of the CDCA7-HELLS axis as a diagnostic and therapeutic target for GC.

Main Methods:

  • Analysis of differentially expressed genes (DEGs) from multiple GC datasets (GSE19826, TCGA-GC, GSE56807).
  • Construction of protein-protein interaction (PPI) networks to identify hub genes.
  • In vitro assays including CCK-8, clonogenic assays, flow cytometry, dot blots, co-immunoprecipitation (Co-IP), chromatin immunoprecipitation (ChIP), and Western blots to assess CDCA7 function and its interaction with HELLS.

Main Results:

  • CDCA7 is highly expressed in GC and exhibits significant diagnostic value.
  • CDCA7 knockdown inhibits GC cell proliferation, invasion, and migration while inducing apoptosis.
  • CDCA7 physically interacts with HELLS, promoting its recruitment to chromatin, and regulates global 5hmC/5mC levels and histone methylation (H3K9me3, H4K20me3).

Conclusions:

  • CDCA7 promotes GC progression through interaction with HELLS, influencing DNA methylation and chromatin stability.
  • The CDCA7-HELLS axis is identified as a key regulator in GC pathogenesis.
  • The CDCA7-HELLS axis holds promise as a potential diagnostic biomarker and therapeutic target for gastric cancer.

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