Defining the proteomic landscape of cultured macrophages and their polarization continuum

Author:

Oates Tiah CL12ORCID,Moura Pedro L3ORCID,Cross Stephen4ORCID,Roberts Kiren1,Baum Holly E5,Haydn‐Smith Katy L1,Wilson Marieangela C6ORCID,Heesom Kate J6,Severn Charlotte E12ORCID,Toye Ashley M12ORCID

Affiliation:

1. School of Biochemistry, Biomedical Sciences Building University of Bristol Bristol UK

2. National Institute for Health Research Blood and Transplant Research Unit (NIHR BTRU) in Red Blood Cell Products University of Bristol Bristol UK

3. Center for Haematology and Regenerative Medicine, Department of Medicine (MedH) Karolinska Institutet Huddinge Sweden

4. University of Bristol Bristol UK

5. Max Planck Bristol Centre for Minimal Biology, School of Chemistry University of Bristol Bristol UK

6. Proteomics Facility, Biomedical Sciences Building University of Bristol Bristol UK

Abstract

AbstractMacrophages have previously been characterized based on phenotypical and functional differences into suggested simplified subtypes of MØ, M1, M2a and M2c. These macrophage subtypes can be generated in a well‐established primary monocyte culture model that produces cells expressing accepted subtype surface markers. To determine how these subtypes retain functional similarities and better understand their formation, we generated all four subtypes from the same donors. Comparative whole‐cell proteomics confirmed that four distinct macrophage subtypes could be induced from the same donor material, with > 50% of 5435 identified proteins being significantly altered in abundance between subtypes. Functional assessment highlighted that these distinct protein expression profiles are primed to enable specific cell functions, indicating that this shifting proteome is predictive of meaningful changes in cell characteristics. Importantly, the 2552 proteins remained consistent in abundance across all macrophage subtypes examined, demonstrating maintenance of a stable core proteome that likely enables swift polarity changes. We next explored the cross‐polarization capabilities of preactivated M1 macrophages treated with dexamethasone. Importantly, these treated cells undergo a partial repolarization toward the M2c surface markers but still retain the M1 functional phenotype. Our investigation of polarized macrophage subtypes therefore provides evidence of a sliding scale of macrophage functionality, with these data sets providing a valuable benchmark resource for further studies of macrophage polarity, with relevance for cell therapy development and drug discovery.

Funder

Cancerfonden

Wellcome Trust

Publisher

Wiley

Subject

Cell Biology,Immunology,Immunology and Allergy

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