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April 13, 2026Cancer Cell International0 citationsOpen Access

SETDB1 promotes gastric cancer progression via UPR and mTOR pathway

JQJing QiaoSLShijie LinYLYeju Li

Key Points

  • This research investigates the role of SETDB1 in gastric cancer progression and its underlying mechanisms.
  • Utilized molecular and cell biology techniques.
  • Compared SETDB1 expression in gastric cancer tissues versus adjacent non-tumor tissues.
  • Conducted RNA sequencing and RNC-mRNA sequencing.
  • Performed functional assays after SETDB1 knockdown and overexpression.
  • SETDB1 was significantly overexpressed in gastric cancer tissues.
  • Knockdown of SETDB1 decreased cell proliferation and migration in gastric cancer.
  • SETDB1 promoted cell proliferation independently of its enzymatic activity.
  • Cell migration required SETDB1's methyltransferase function.
  • SETDB1 activated UPR to enhance c-MYC transcription and engaged the mTOR-4EBP1 axis for HIF1α translation.

Abstract

SET Domain Bifurcated histone lysine methyltransferase 1 (SETDB1), a histone H3K9 methyltransferase, is frequently overexpressed in multiple malignancies, including gastric cancer (GC). However, its molecular functions and regulatory mechanisms in GC progression remain poorly defined. Here, we identified the role of SETDB1 in gastric cancer using molecular and cell biology methods, combining RNA-seq and RNC-mRNA seq. Here, we found SETDB1 was markedly upregulated in gastric cancer tissues compared with adjacent non‑tumor tissues. Functional analyses revealed that SETDB1 knockdown suppressed GC cell proliferation and migration, whereas overexpression had the opposite effect. Notably, SETDB1 promoted cell proliferation independently of its methyltransferase activity, while its enhancement of migration required enzymatic function. Mechanistically, SETDB1 activated the unfolded protein response (UPR) to stimulate c-MYC transcription and cell-cycle progression, and engaged the mTOR–4EBP1 axis to promote HIF1α translation. These findings reveal a dual regulatory role for SETDB1 in GC and identify it as a promising therapeutic target for managing gastric cancer.

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Cite This Study

Qiao et al. (2026) studied this question.

synapsesocial.com/papers/69dc88f43afacbeac03eabcfhttps://doi.org/10.1186/s12935-026-04296-1
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