Cargando…
N-glycosylation Regulates Intrinsic IFN-γ Resistance in Colorectal Cancer: Implications for Immunotherapy
BACKGROUND & AIMS: Advanced colorectal carcinoma (CRC) is characterized by a high frequency of primary immune evasion and refractoriness to immunotherapy. Given the importance of interferon (IFN)-γ in CRC immunosurveillance, we investigated whether and how acquired IFN-γ resistance in tumor cell...
Autores principales: | , , , , , , , , , , , , , , , , , , , , , , , , , , , |
---|---|
Formato: | Online Artículo Texto |
Lenguaje: | English |
Publicado: |
2023
|
Materias: | |
Acceso en línea: | https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10009756/ https://www.ncbi.nlm.nih.gov/pubmed/36402190 http://dx.doi.org/10.1053/j.gastro.2022.11.018 |
_version_ | 1784906054872596480 |
---|---|
author | Krug, Julia Rodrian, Gabriele Petter, Katja Yang, Hai Khoziainova, Svetlana Guo, Wei Bénard, Alan Merkel, Susanne Gellert, Susan Maschauer, Simone Spermann, Monika Waldner, Maximilian Bailey, Peter Pilarsky, Christian Liebl, Andrea Tripal, Philipp Christoph, Jan Naschberger, Elisabeth Croner, Roland Schellerer, Vera S. Becker, Christoph Hartmann, Arndt Tüting, Thomas Prante, Olaf Grützmann, Robert Grivennikov, Sergei I. Stürzl, Michael Britzen-Laurent, Nathalie |
author_facet | Krug, Julia Rodrian, Gabriele Petter, Katja Yang, Hai Khoziainova, Svetlana Guo, Wei Bénard, Alan Merkel, Susanne Gellert, Susan Maschauer, Simone Spermann, Monika Waldner, Maximilian Bailey, Peter Pilarsky, Christian Liebl, Andrea Tripal, Philipp Christoph, Jan Naschberger, Elisabeth Croner, Roland Schellerer, Vera S. Becker, Christoph Hartmann, Arndt Tüting, Thomas Prante, Olaf Grützmann, Robert Grivennikov, Sergei I. Stürzl, Michael Britzen-Laurent, Nathalie |
author_sort | Krug, Julia |
collection | PubMed |
description | BACKGROUND & AIMS: Advanced colorectal carcinoma (CRC) is characterized by a high frequency of primary immune evasion and refractoriness to immunotherapy. Given the importance of interferon (IFN)-γ in CRC immunosurveillance, we investigated whether and how acquired IFN-γ resistance in tumor cells would promote tumor growth, and whether IFN-γ sensitivity could be restored. METHODS: Spontaneous and colitis-associated CRC development was induced in mice with a specific IFN-γ pathway inhibition in intestinal epithelial cells. The influence of IFN-γ pathway gene status and expression on survival was assessed in patients with CRC. The mechanisms underlying IFN-γ resistance were investigated in CRC cell lines. RESULTS: The conditional knockout of the IFN-γ receptor in intestinal epithelial cells enhanced spontaneous and colitis-associated colon tumorigenesis in mice, and the loss of IFN-γ receptor α (IFNγRα) expression by tumor cells predicted poor prognosis in patients with CRC. IFNγRα expression was repressed in human CRC cells through changes in N-glycosylation, which decreased protein stability via proteasome-dependent degradation, inhibiting IFNγR-signaling. Downregulation of the bisecting N-acetylglucosaminyltransferase III (MGAT3) expression was associated with IFN-γ resistance in all IFN-γ–resistant cells, and highly correlated with low IFNγRα expression in CRC tissues. Both ectopic and pharmacological reconstitution of MGAT3 expression with all-trans retinoic acid increased bisecting N-glycosylation, as well as IFNγRα protein stability and signaling. CONCLUSIONS: Together, our results demonstrated that tumor-associated changes in N-glycosylation destabilize IFNγRα, causing IFN-γ resistance in CRC. IFN-γ sensitivity could be reestablished through the increase in MGAT3 expression, notably via all-trans retinoic acid treatment, providing new prospects for the treatment of immune-resistant CRC. |
format | Online Article Text |
id | pubmed-10009756 |
institution | National Center for Biotechnology Information |
language | English |
publishDate | 2023 |
record_format | MEDLINE/PubMed |
spelling | pubmed-100097562023-03-13 N-glycosylation Regulates Intrinsic IFN-γ Resistance in Colorectal Cancer: Implications for Immunotherapy Krug, Julia Rodrian, Gabriele Petter, Katja Yang, Hai Khoziainova, Svetlana Guo, Wei Bénard, Alan Merkel, Susanne Gellert, Susan Maschauer, Simone Spermann, Monika Waldner, Maximilian Bailey, Peter Pilarsky, Christian Liebl, Andrea Tripal, Philipp Christoph, Jan Naschberger, Elisabeth Croner, Roland Schellerer, Vera S. Becker, Christoph Hartmann, Arndt Tüting, Thomas Prante, Olaf Grützmann, Robert Grivennikov, Sergei I. Stürzl, Michael Britzen-Laurent, Nathalie Gastroenterology Article BACKGROUND & AIMS: Advanced colorectal carcinoma (CRC) is characterized by a high frequency of primary immune evasion and refractoriness to immunotherapy. Given the importance of interferon (IFN)-γ in CRC immunosurveillance, we investigated whether and how acquired IFN-γ resistance in tumor cells would promote tumor growth, and whether IFN-γ sensitivity could be restored. METHODS: Spontaneous and colitis-associated CRC development was induced in mice with a specific IFN-γ pathway inhibition in intestinal epithelial cells. The influence of IFN-γ pathway gene status and expression on survival was assessed in patients with CRC. The mechanisms underlying IFN-γ resistance were investigated in CRC cell lines. RESULTS: The conditional knockout of the IFN-γ receptor in intestinal epithelial cells enhanced spontaneous and colitis-associated colon tumorigenesis in mice, and the loss of IFN-γ receptor α (IFNγRα) expression by tumor cells predicted poor prognosis in patients with CRC. IFNγRα expression was repressed in human CRC cells through changes in N-glycosylation, which decreased protein stability via proteasome-dependent degradation, inhibiting IFNγR-signaling. Downregulation of the bisecting N-acetylglucosaminyltransferase III (MGAT3) expression was associated with IFN-γ resistance in all IFN-γ–resistant cells, and highly correlated with low IFNγRα expression in CRC tissues. Both ectopic and pharmacological reconstitution of MGAT3 expression with all-trans retinoic acid increased bisecting N-glycosylation, as well as IFNγRα protein stability and signaling. CONCLUSIONS: Together, our results demonstrated that tumor-associated changes in N-glycosylation destabilize IFNγRα, causing IFN-γ resistance in CRC. IFN-γ sensitivity could be reestablished through the increase in MGAT3 expression, notably via all-trans retinoic acid treatment, providing new prospects for the treatment of immune-resistant CRC. 2023-03 2022-11-17 /pmc/articles/PMC10009756/ /pubmed/36402190 http://dx.doi.org/10.1053/j.gastro.2022.11.018 Text en https://creativecommons.org/licenses/by-nc-nd/4.0/This is an open access article under the CC BY-NC-ND license (http://creativecommons.org/licenses/by-nc-nd/4.0/ (https://creativecommons.org/licenses/by-nc-nd/4.0/) ). 0016-5085 https://doi.org/10.1053/j.gastro.2022.11.018 |
spellingShingle | Article Krug, Julia Rodrian, Gabriele Petter, Katja Yang, Hai Khoziainova, Svetlana Guo, Wei Bénard, Alan Merkel, Susanne Gellert, Susan Maschauer, Simone Spermann, Monika Waldner, Maximilian Bailey, Peter Pilarsky, Christian Liebl, Andrea Tripal, Philipp Christoph, Jan Naschberger, Elisabeth Croner, Roland Schellerer, Vera S. Becker, Christoph Hartmann, Arndt Tüting, Thomas Prante, Olaf Grützmann, Robert Grivennikov, Sergei I. Stürzl, Michael Britzen-Laurent, Nathalie N-glycosylation Regulates Intrinsic IFN-γ Resistance in Colorectal Cancer: Implications for Immunotherapy |
title | N-glycosylation Regulates Intrinsic IFN-γ Resistance in Colorectal Cancer: Implications for Immunotherapy |
title_full | N-glycosylation Regulates Intrinsic IFN-γ Resistance in Colorectal Cancer: Implications for Immunotherapy |
title_fullStr | N-glycosylation Regulates Intrinsic IFN-γ Resistance in Colorectal Cancer: Implications for Immunotherapy |
title_full_unstemmed | N-glycosylation Regulates Intrinsic IFN-γ Resistance in Colorectal Cancer: Implications for Immunotherapy |
title_short | N-glycosylation Regulates Intrinsic IFN-γ Resistance in Colorectal Cancer: Implications for Immunotherapy |
title_sort | n-glycosylation regulates intrinsic ifn-γ resistance in colorectal cancer: implications for immunotherapy |
topic | Article |
url | https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10009756/ https://www.ncbi.nlm.nih.gov/pubmed/36402190 http://dx.doi.org/10.1053/j.gastro.2022.11.018 |
work_keys_str_mv | AT krugjulia nglycosylationregulatesintrinsicifngresistanceincolorectalcancerimplicationsforimmunotherapy AT rodriangabriele nglycosylationregulatesintrinsicifngresistanceincolorectalcancerimplicationsforimmunotherapy AT petterkatja nglycosylationregulatesintrinsicifngresistanceincolorectalcancerimplicationsforimmunotherapy AT yanghai nglycosylationregulatesintrinsicifngresistanceincolorectalcancerimplicationsforimmunotherapy AT khoziainovasvetlana nglycosylationregulatesintrinsicifngresistanceincolorectalcancerimplicationsforimmunotherapy AT guowei nglycosylationregulatesintrinsicifngresistanceincolorectalcancerimplicationsforimmunotherapy AT benardalan nglycosylationregulatesintrinsicifngresistanceincolorectalcancerimplicationsforimmunotherapy AT merkelsusanne nglycosylationregulatesintrinsicifngresistanceincolorectalcancerimplicationsforimmunotherapy AT gellertsusan nglycosylationregulatesintrinsicifngresistanceincolorectalcancerimplicationsforimmunotherapy AT maschauersimone nglycosylationregulatesintrinsicifngresistanceincolorectalcancerimplicationsforimmunotherapy AT spermannmonika nglycosylationregulatesintrinsicifngresistanceincolorectalcancerimplicationsforimmunotherapy AT waldnermaximilian nglycosylationregulatesintrinsicifngresistanceincolorectalcancerimplicationsforimmunotherapy AT baileypeter nglycosylationregulatesintrinsicifngresistanceincolorectalcancerimplicationsforimmunotherapy AT pilarskychristian nglycosylationregulatesintrinsicifngresistanceincolorectalcancerimplicationsforimmunotherapy AT lieblandrea nglycosylationregulatesintrinsicifngresistanceincolorectalcancerimplicationsforimmunotherapy AT tripalphilipp nglycosylationregulatesintrinsicifngresistanceincolorectalcancerimplicationsforimmunotherapy AT christophjan nglycosylationregulatesintrinsicifngresistanceincolorectalcancerimplicationsforimmunotherapy AT naschbergerelisabeth nglycosylationregulatesintrinsicifngresistanceincolorectalcancerimplicationsforimmunotherapy AT cronerroland nglycosylationregulatesintrinsicifngresistanceincolorectalcancerimplicationsforimmunotherapy AT schellererveras nglycosylationregulatesintrinsicifngresistanceincolorectalcancerimplicationsforimmunotherapy AT beckerchristoph nglycosylationregulatesintrinsicifngresistanceincolorectalcancerimplicationsforimmunotherapy AT hartmannarndt nglycosylationregulatesintrinsicifngresistanceincolorectalcancerimplicationsforimmunotherapy AT tutingthomas nglycosylationregulatesintrinsicifngresistanceincolorectalcancerimplicationsforimmunotherapy AT pranteolaf nglycosylationregulatesintrinsicifngresistanceincolorectalcancerimplicationsforimmunotherapy AT grutzmannrobert nglycosylationregulatesintrinsicifngresistanceincolorectalcancerimplicationsforimmunotherapy AT grivennikovsergeii nglycosylationregulatesintrinsicifngresistanceincolorectalcancerimplicationsforimmunotherapy AT sturzlmichael nglycosylationregulatesintrinsicifngresistanceincolorectalcancerimplicationsforimmunotherapy AT britzenlaurentnathalie nglycosylationregulatesintrinsicifngresistanceincolorectalcancerimplicationsforimmunotherapy |