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Clonal LIMD1 loss drives PD-L1 immune evasion via ARIH1-dependent ubiquitination in lung cancer

  • Kunal M Shah
  • , Paul T Kennedy
  • , James Rm Black
  • , Piotr Pawlik
  • , Kevin Litchfield
  • , Krupa Thakkar
  • , Maria F Contreras-Gerenas
  • , Kirsten Brooksbank
  • , Oliver Yuan
  • , Paul Grevitt
  • , Sarah Charrot
  • , Jeff Davies
  • , Lekh N Dahal
  • , Dimitris Lagos
  • , Nicholas McGranahan
  • , Tyson V Sharp
  • Queen Mary University, London
  • UCL Cancer Institute
  • Department of Molecular and Clinical Pharmacology, University of Liverpool
  • University of York

Allbwn ymchwil: Cyfraniad at gyfnodolynErthygladolygiad gan gymheiriaid

Crynodeb

LIMD1, a tumour suppressor located at chromosome 3p21.3, is frequently lost in non-small-cell lung cancer, yet its role in tumour-immune interactions remains unclear. Here, we show LIMD1 loss increases PD-L1 protein abundance across multiple lung cancer models and primary airway epithelial cells. Mechanistically, LIMD1 restrains PD-L1 through post-transcriptional and post-translational mechanisms. LIMD1 loss can relieve microRNA-mediated repression of the CD274 3'UTR, and LIMD1 loss can also disrupt ARIH1-PD-L1 association, reduce PD-L1 polyubiquitination, and stabilise PD-L1 protein without a commensurate increase in CD274 transcript levels in isogenic models. Functionally, LIMD1-deficient tumour cells suppress CD8+ T-cell activation in vitro and show enhanced sensitivity to PD-1/PD-L1 blockade in tumour-PBMC co-culture assays. Analysis of TRACERx non-small-cell lung cancer samples revealed clonal LIMD1 loss of heterozygosity in ∼40% of lung adenocarcinomas, where it is associated with increased tumour PD-L1 expression. Across independent patient cohorts receiving immune checkpoint blockade, low LIMD1 expression was enriched among responders. We identify LIMD1 as a tumour-intrinsic regulator of PD-L1 turnover and suggest that tumour suppressor loss can shape immune checkpoint biology and influence immunotherapy response.

Iaith wreiddiolSaesneg
Rhif yr erthygle202603812
CyfnodolynLife science alliance
Cyfrol9
Rhif cyhoeddi10
Dynodwyr Gwrthrych Digidol (DOIs)
StatwsCyhoeddwyd - 7 Awst 2026

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