Gene-selective transcription promotes the inhibition of tissue reparative macrophages by TNF

Author:

Dichtl Stefanie1ORCID,Sanin David E23,Koss Carolin K4,Willenborg Sebastian5,Petzold Andreas6,Tanzer Maria C1,Dahl Andreas6ORCID,Kabat Agnieszka M23ORCID,Lindenthal Laura1,Zeitler Leonie1ORCID,Satzinger Sabrina5,Strasser Alexander1,Mann Matthias1ORCID,Roers Axel7,Eming Sabine A58910,El Kasmi Karim C4,Pearce Edward J23,Murray Peter J1ORCID

Affiliation:

1. Max Planck Institute of Biochemistry, Martinsried, Germany

2. Department of Immunometabolism, Max Planck Institute for Immunobiology and Epigenetics, Freiburg, Germany

3. The Bloomberg∼Kimmel Institute for Cancer Immunotherapy at Johns Hopkins, Johns Hopkins University, Baltimore, MD, USA

4. Boehringer Ingelheim Pharma GmbH and Co KG, Biberach, Germany

5. Department of Dermatology, University of Cologne, Cologne, Germany

6. Deep Sequencing Group, Biotechnology Center, Technische Universität Dresden, Dresden, Germany

7. Institute for Immunology, Medical Faculty Carl Gustav Carus, TU Dresden, Dresden, Germany

8. Center for Molecular Medicine Cologne, University of Cologne, Cologne, Germany

9. Cologne Excellence Cluster on Cellular Stress Responses in Aging-Associated Diseases, University of Cologne, Cologne, Germany

10. Institute of Zoology, Developmental Biology Unit, University of Cologne, Cologne, Germany

Abstract

Anti-TNF therapies are a core anti-inflammatory approach for chronic diseases such as rheumatoid arthritis and Crohn’s Disease. Previously, we and others found that TNF blocks the emergence and function of alternative-activated or M2 macrophages involved in wound healing and tissue-reparative functions. Conceivably, anti-TNF drugs could mediate their protective effects in part by an altered balance of macrophage activity. To understand the mechanistic basis of how TNF regulates tissue-reparative macrophages, we used RNAseq, scRNAseq, ATACseq, time-resolved phospho-proteomics, gene-specific approaches, metabolic analysis, and signaling pathway deconvolution. We found that TNF controls tissue-reparative macrophage gene expression in a highly gene-specific way, dependent on JNK signaling via the type 1 TNF receptor on specific populations of alternative-activated macrophages. We further determined that JNK signaling has a profound and broad effect on activated macrophage gene expression. Our findings suggest that TNF’s anti-M2 effects evolved to specifically modulate components of tissue and reparative M2 macrophages and TNF is therefore a context-specific modulator of M2 macrophages rather than a pan-M2 inhibitor.

Funder

Deutsche Forschungsgemeinschaft

Max Planck Gesellschaft

Alexander von Humboldt Fellowship

Publisher

Life Science Alliance, LLC

Subject

Health, Toxicology and Mutagenesis,Plant Science,Biochemistry, Genetics and Molecular Biology (miscellaneous),Ecology

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