c-MAF dependent perivascular macrophages regulate diet induced metabolic syndrome
Moura Silva, H.; Kitoko, J. Z.; Queiroz, C. P.; Kroehling, L.; Matheis, F.; Lu Yang, K.; Ren-Fielding, C.; Littman, D.; Bozza, M.; Mucida, D.; Lafaille, J.
Show abstract
Macrophages are an essential part of tissue development and physiology. Perivascular macrophages have been described in tissues and appear to play a role in development and disease processes, although it remains unclear what are the key features of these cells. Here, we identify a subpopulation of perivascular macrophages in several organs, characterized by their dependence on the transcription factor c-MAF, displaying non-conventional macrophage markers including LYVE1, Folate receptor 2 and CD38. Conditional deletion of c-MAF in macrophage lineages caused ablation of perivascular macrophages in the brain and altered muscularis macrophages program in the intestine. In the white adipose tissue (WAT), c-MAF deficient perivascular macrophages displayed an altered gene expression profile, which was linked to an increased vascular branching into the tissue. Upon feeding on high fat diet (HFD), mice with c-MAF deficient macrophages showed improved metabolic parameters compared to wild-type mice, including less weight gain, greater glucose tolerance and reduced inflammatory cell profile in WAT. These results define c-MAF as a central regulator of perivascular macrophages cell identity and transcriptional program in vivo and reveal a novel role for this tissue resident macrophage population in the regulation of metabolic syndrome.
Matching journals
The top 6 journals account for 50% of the predicted probability mass.
Similar papers in this journal
- A20's Linear Ubiquitin Binding Motif Restrains Pathogenic Activation of TH17/22 cells and IL-22 Driven Enteritis 95%
- Maintenance DNA methylation is essential for regulatory T cell development and stability of suppressive function 95%
- Distinct Colitis-Associated Macrophages Drive NOD2-Dependent Bacterial Sensing and Gut Homeostasis 95%
Similar papers in this journal
- A Neurogenic Signature Involving Monoamine Oxidase-A controls Human Thermogenic Adipose Tissue Development 96%
- Sexual dimorphism in obesity is governed by RELMα regulation of adipose macrophages and eosinophils 96%
- Sphingosine 1-phosphate-regulated transcriptomes in heterogenous arterial and lymphatic endothelium of the aorta 95%
Similar papers in this journal
- Origin and microenvironment contribute to the sexually dimorphic phenotype and function of peritoneal macrophages. 96%
- Predictive framework of macrophage activation 96%
- The transcription factor EGR2 is indispensable for tissue-specific imprinting of alveolar macrophages in health and tissue repair 96%
Similar papers in this journal
- ICOS signaling limits regulatory T cell accumulation and function in visceral adipose tissue 97%
- Immunoregulatory subtype of dermal lymphatic endothelial cells at capillary terminals drives lymphatic malformations 96%
- A network of CD163+ macrophages monitors enhanced permeability at the blood-dorsal root ganglion barrier 96%
Similar papers in this journal
- Developmental dynamics of the neural crest-mesenchymal axis in creating the thymic microenvironment 96%
- Xenogeneic Skin Transplantation Promotes Angiogenesis and Tissue Regeneration Through Vitamin D-Activated Trem2+ Macrophages 95%
- Selective disruption of lipid peroxide homeostasis in intratumoral regulatory T cells by targeting FSP1 enhances cancer immunity 95%
"Similar papers" are the closest papers from that journal in the model's embedding space. They show what the match is built on, but the ranking comes mostly from a classifier over the whole training set, not from these examples alone.