Nuanced role for dendritic cell intrinsic IRE1 RNase in the regulation of antitumor adaptive immunity

Front Immunol. 2023 Jun 6:14:1209588. doi: 10.3389/fimmu.2023.1209588. eCollection 2023.

Abstract

In cancer, activation of the IRE1/XBP1s axis of the unfolded protein response (UPR) promotes immunosuppression and tumor growth, by acting in cancer cells and tumor infiltrating immune cells. However, the role of IRE1/XBP1s in dendritic cells (DCs) in tumors, particularly in conventional type 1 DCs (cDC1s) which are cellular targets in immunotherapy, has not been fully elucidated. Here, we studied the role of IRE1/XBP1s in subcutaneous B16/B78 melanoma and MC38 tumors by generating loss-of-function models of IRE1 and/or XBP1s in DCs or in cDC1s. Data show that concomitant deletion of the RNase domain of IRE1 and XBP1s in DCs and cDC1s does not influence the kinetics of B16/B78 and MC38 tumor growth or the effector profile of tumor infiltrating T cells. A modest effect is observed in mice bearing single deletion of XBP1s in DCs, which showed slight acceleration of melanoma tumor growth and dysfunctional T cell responses, however, this effect was not recapitulated in animals lacking XBP1 only in cDC1s. Thus, evidence presented here argues against a general pro-tumorigenic role of the IRE1/XBP1s pathway in tumor associated DC subsets.

Keywords: IRE1; XBP1; antitumor immune response; cDC1; dendritic cells; immunity; melanoma; unfolded protein response.

Publication types

  • Research Support, Non-U.S. Gov't

MeSH terms

  • Adaptive Immunity
  • Animals
  • Dendritic Cells
  • Endoribonucleases / genetics
  • Endoribonucleases / metabolism
  • Melanoma, Experimental* / metabolism
  • Mice
  • Protein Serine-Threonine Kinases / genetics
  • Protein Serine-Threonine Kinases / metabolism
  • Ribonuclease, Pancreatic / metabolism
  • Ribonucleases* / metabolism

Substances

  • Ribonucleases
  • Endoribonucleases
  • Ribonuclease, Pancreatic
  • Protein Serine-Threonine Kinases

Grants and funding

This work was funded by an International Research Scholar grant from HHMI (HHMI#55008744, FO); FONDECYT grant No 1200793 (FO); FONDECYT grant No 1191438 (MB); CONICYT/FONDEQUIP/EQM140016; FONDECYT grant No 1212070 (AL); Financiamiento Basal para Centros Científicos y Tecnológicos de Excelencia de ANID, Centro Ciencia & Vida, FB210008 (MB and AL); CONICYT-PFCHA/Doctorado Nacional/2017-21170366 (FF). The work in Belgium was funded by Stichting tegen Kanker (2014/283), FWO-EOS (ID 30837538) and ERC-CoG (ID 819314) (SJ). SR is supported by a BOF grant (University of Ghent, 01D02419).