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June 5, 2026Nature Communications0 citationsOpen Access

The mannosyltransferase DPM1 regulates the activity of ER-stress sensor IRE1 in colorectal cancer

HIHussein IssaouiLZLina ZawilLBLola Bellone

Key Points

  • The research aims to explore how DPM1 regulates IRE1 activity and its implications for immune responses in colorectal cancer.
  • Used BioID screen to identify DPM1 as a regulator of IRE1 expression and activity.
  • Analyzed RNA-sequencing data from colorectal cancer patients to correlate DPM1 expression with IRE1 activity and immune responses.
  • Examined the effects of DPM1 ablation and IRE1 inhibition on immune cell interactions in cancer cells.
  • Low DPM1 expression correlates with an IRE1-dependent transcriptional signature and enhanced immune infiltration.
  • DPM1 ablation leads to reduced protein glycosylation, activating IRE1 chronically and increasing cytotoxic T cell response.
  • Inhibition of IRE1 reverses the immune response effects induced by DPM1 ablation.

Abstract

Most colorectal cancer (CRC) patients exhibit resistance to immune checkpoint blockade (ICB), limiting treatment efficacy. Activating the unfolded protein response sensor IRE1α in cancer cells can induce anticancer immune responses, yet its regulation remains unclear. Here we identify Dolichyl-Phosphate Mannosyltransferase 1 (DPM1) as a regulator of IRE1 expression and activity using BioID screen. Analysis of CRC patient RNA-sequencing data reveals that low DPM1 expression correlates with an IRE1-dependent transcriptional signature, increased immune infiltration, and improved ICB responses. Mechanistically, DPM1 ablation reduces protein glycosylation, causing chronic IRE1 activation in cancer cells and enhanced cytotoxic T cell-mediated immunosurveillance. Inhibition or knock-out of IRE1 reverses this effect. These findings establish DPM1 as a modulator of IRE1 activity that influences tumor immunogenicity, suggesting its potential as a therapeutic target to improve cancer immunotherapy outcomes. Endoplasmic reticulum (ER)-stress signaling shapes tumor immunity, yet the underlying molecular mechanisms remain poorly defined. Here, the authors show that the glycosylation enzyme DPM1 regulates the activity of ER-stress sensor IRE1, and that low DPM1 expression is associated with improved responses to immunotherapy in patients with colorectal cancer.

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Cite This Study

Issaoui et al. (2026) studied this question.

synapsesocial.com/papers/6a22672f763171746d545e75https://doi.org/10.1038/s41467-026-73942-z
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