p16INK4a deficiency promotes IL-4–induced polarization and inhibits proinflammatory signaling in macrophages

Author:

Cudejko Céline1234,Wouters Kristiaan1234,Fuentes Lucía1234,Hannou Sarah Anissa1234,Paquet Charlotte1234,Bantubungi Kadiombo1234,Bouchaert Emmanuel1234,Vanhoutte Jonathan1234,Fleury Sébastien1234,Remy Patrick45,Tailleux Anne1234,Chinetti-Gbaguidi Giulia1234,Dombrowicz David1234,Staels Bart1234,Paumelle Réjane1234

Affiliation:

1. Université Lille Nord de France, Lille, France;

2. Inserm, U1011, Lille, France;

3. Université de Lille 2, Lille, France;

4. Institut Pasteur de Lille, Lille, France; and

5. Service de Production des antigènes, Institut Pasteur de Lille, Lille, France

Abstract

Abstract The CDKN2A locus, which contains the tumor suppressor gene p16INK4a, is associated with an increased risk of age-related inflammatory diseases, such as cardiovascular disease and type 2 diabetes, in which macrophages play a crucial role. Monocytes can polarize toward classically (CAMφ) or alternatively (AAMφ) activated macrophages. However, the molecular mechanisms underlying the acquisition of these phenotypes are not well defined. Here, we show that p16INK4a deficiency (p16−/−) modulates the macrophage phenotype. Transcriptome analysis revealed that p16−/− BM-derived macrophages (BMDMs) exhibit a phenotype resembling IL-4–induced macrophage polarization. In line with this observation, p16−/− BMDMs displayed a decreased response to classically polarizing IFNγ and LPS and an increased sensitivity to alternative polarization by IL-4. Furthermore, mice transplanted with p16−/− BM displayed higher hepatic AAMφ marker expression levels on Schistosoma mansoni infection, an in vivo model of AAMφ phenotype skewing. Surprisingly, p16−/− BMDMs did not display increased IL-4–induced STAT6 signaling, but decreased IFNγ-induced STAT1 and lipopolysaccharide (LPS)–induced IKKα,β phosphorylation. This decrease correlated with decreased JAK2 phosphorylation and with higher levels of inhibitory acetylation of STAT1 and IKKα,β. These findings identify p16INK4a as a modulator of macrophage activation and polarization via the JAK2-STAT1 pathway with possible roles in inflammatory diseases.

Publisher

American Society of Hematology

Subject

Cell Biology,Hematology,Immunology,Biochemistry

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