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Phagocytosis increases an oxidative metabolic and immune suppressive signature in tumor macrophages

Phagocytosis is a key macrophage function, but how phagocytosis shapes tumor-associated macrophage (TAM) phenotypes and heterogeneity in solid tumors remains unclear. Here, we utilized both syngeneic and novel autochthonous lung tumor models in which neoplastic cells express the fluorophore tdTomato...

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Autores principales: Gonzalez, Michael A., Lu, Daniel R., Yousefi, Maryam, Kroll, Ashley, Lo, Chen Hao, Briseño, Carlos G., Watson, J. E. Vivienne, Novitskiy, Sergey, Arias, Vanessa, Zhou, Hong, Plata Stapper, Andres, Tsai, Min K., Ashkin, Emily L., Murray, Christopher W., Li, Chi-Ming, Winslow, Monte M., Tarbell, Kristin V.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Rockefeller University Press 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10067971/
https://www.ncbi.nlm.nih.gov/pubmed/36995340
http://dx.doi.org/10.1084/jem.20221472
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author Gonzalez, Michael A.
Lu, Daniel R.
Yousefi, Maryam
Kroll, Ashley
Lo, Chen Hao
Briseño, Carlos G.
Watson, J. E. Vivienne
Novitskiy, Sergey
Arias, Vanessa
Zhou, Hong
Plata Stapper, Andres
Tsai, Min K.
Ashkin, Emily L.
Murray, Christopher W.
Li, Chi-Ming
Winslow, Monte M.
Tarbell, Kristin V.
author_facet Gonzalez, Michael A.
Lu, Daniel R.
Yousefi, Maryam
Kroll, Ashley
Lo, Chen Hao
Briseño, Carlos G.
Watson, J. E. Vivienne
Novitskiy, Sergey
Arias, Vanessa
Zhou, Hong
Plata Stapper, Andres
Tsai, Min K.
Ashkin, Emily L.
Murray, Christopher W.
Li, Chi-Ming
Winslow, Monte M.
Tarbell, Kristin V.
author_sort Gonzalez, Michael A.
collection PubMed
description Phagocytosis is a key macrophage function, but how phagocytosis shapes tumor-associated macrophage (TAM) phenotypes and heterogeneity in solid tumors remains unclear. Here, we utilized both syngeneic and novel autochthonous lung tumor models in which neoplastic cells express the fluorophore tdTomato (tdTom) to identify TAMs that have phagocytosed neoplastic cells in vivo. Phagocytic tdTom(pos) TAMs upregulated antigen presentation and anti-inflammatory proteins, but downregulated classic proinflammatory effectors compared to tdTom(neg) TAMs. Single-cell transcriptomic profiling identified TAM subset-specific and common gene expression changes associated with phagocytosis. We uncover a phagocytic signature that is predominated by oxidative phosphorylation (OXPHOS), ribosomal, and metabolic genes, and this signature correlates with worse clinical outcome in human lung cancer. Expression of OXPHOS proteins, mitochondrial content, and functional utilization of OXPHOS were increased in tdTom(pos) TAMs. tdTom(pos) tumor dendritic cells also display similar metabolic changes. Our identification of phagocytic TAMs as a distinct myeloid cell state links phagocytosis of neoplastic cells in vivo with OXPHOS and tumor-promoting phenotypes.
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spelling pubmed-100679712023-09-30 Phagocytosis increases an oxidative metabolic and immune suppressive signature in tumor macrophages Gonzalez, Michael A. Lu, Daniel R. Yousefi, Maryam Kroll, Ashley Lo, Chen Hao Briseño, Carlos G. Watson, J. E. Vivienne Novitskiy, Sergey Arias, Vanessa Zhou, Hong Plata Stapper, Andres Tsai, Min K. Ashkin, Emily L. Murray, Christopher W. Li, Chi-Ming Winslow, Monte M. Tarbell, Kristin V. J Exp Med Article Phagocytosis is a key macrophage function, but how phagocytosis shapes tumor-associated macrophage (TAM) phenotypes and heterogeneity in solid tumors remains unclear. Here, we utilized both syngeneic and novel autochthonous lung tumor models in which neoplastic cells express the fluorophore tdTomato (tdTom) to identify TAMs that have phagocytosed neoplastic cells in vivo. Phagocytic tdTom(pos) TAMs upregulated antigen presentation and anti-inflammatory proteins, but downregulated classic proinflammatory effectors compared to tdTom(neg) TAMs. Single-cell transcriptomic profiling identified TAM subset-specific and common gene expression changes associated with phagocytosis. We uncover a phagocytic signature that is predominated by oxidative phosphorylation (OXPHOS), ribosomal, and metabolic genes, and this signature correlates with worse clinical outcome in human lung cancer. Expression of OXPHOS proteins, mitochondrial content, and functional utilization of OXPHOS were increased in tdTom(pos) TAMs. tdTom(pos) tumor dendritic cells also display similar metabolic changes. Our identification of phagocytic TAMs as a distinct myeloid cell state links phagocytosis of neoplastic cells in vivo with OXPHOS and tumor-promoting phenotypes. Rockefeller University Press 2023-03-30 /pmc/articles/PMC10067971/ /pubmed/36995340 http://dx.doi.org/10.1084/jem.20221472 Text en © 2023 Gonzalez et al. https://creativecommons.org/licenses/by-nc-sa/4.0/http://www.rupress.org/terms/This article is distributed under the terms of an Attribution–Noncommercial–Share Alike–No Mirror Sites license for the first six months after the publication date (see http://www.rupress.org/terms/). After six months it is available under a Creative Commons License (Attribution–Noncommercial–Share Alike 4.0 International license, as described at https://creativecommons.org/licenses/by-nc-sa/4.0/).
spellingShingle Article
Gonzalez, Michael A.
Lu, Daniel R.
Yousefi, Maryam
Kroll, Ashley
Lo, Chen Hao
Briseño, Carlos G.
Watson, J. E. Vivienne
Novitskiy, Sergey
Arias, Vanessa
Zhou, Hong
Plata Stapper, Andres
Tsai, Min K.
Ashkin, Emily L.
Murray, Christopher W.
Li, Chi-Ming
Winslow, Monte M.
Tarbell, Kristin V.
Phagocytosis increases an oxidative metabolic and immune suppressive signature in tumor macrophages
title Phagocytosis increases an oxidative metabolic and immune suppressive signature in tumor macrophages
title_full Phagocytosis increases an oxidative metabolic and immune suppressive signature in tumor macrophages
title_fullStr Phagocytosis increases an oxidative metabolic and immune suppressive signature in tumor macrophages
title_full_unstemmed Phagocytosis increases an oxidative metabolic and immune suppressive signature in tumor macrophages
title_short Phagocytosis increases an oxidative metabolic and immune suppressive signature in tumor macrophages
title_sort phagocytosis increases an oxidative metabolic and immune suppressive signature in tumor macrophages
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10067971/
https://www.ncbi.nlm.nih.gov/pubmed/36995340
http://dx.doi.org/10.1084/jem.20221472
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