Depletion of stromal cells expressing fibroblast activation protein-α from skeletal muscle and bone marrow results in cachexia and anemia

Author:

Roberts Edward W.11,Deonarine Andrew1,Jones James O.11,Denton Alice E.11,Feig Christine1,Lyons Scott K.1,Espeli Marion1,Kraman Matthew11,McKenna Brendan1,Wells Richard J.B.11,Zhao Qi2,Caballero Otavia L.2,Larder Rachel1,Coll Anthony P.1,O’Rahilly Stephen1,Brindle Kevin M.1,Teichmann Sarah A.1,Tuveson David A.13,Fearon Douglas T.11

Affiliation:

1. Department of Medicine; Cambridge Institute for Medical Research, Wellcome Trust/Medical Research Council (MRC) Building; and Institute of Metabolic Sciences; Addenbrooke’s Hospital; Cancer Research UK Cambridge Institute, Li Ka Shing Centre; and MRC Laboratory of Molecular Biology; University of Cambridge, Cambridge CB2 2QH, England, UK

2. Ludwig Collaborative Laboratory, Johns Hopkins University School of Medicine, Baltimore, MD 21231

3. Cold Spring Harbor Laboratory, Cold Spring Harbor, NY 11724

Abstract

Fibroblast activation protein-α (FAP) identifies stromal cells of mesenchymal origin in human cancers and chronic inflammatory lesions. In mouse models of cancer, they have been shown to be immune suppressive, but studies of their occurrence and function in normal tissues have been limited. With a transgenic mouse line permitting the bioluminescent imaging of FAP+ cells, we find that they reside in most tissues of the adult mouse. FAP+ cells from three sites, skeletal muscle, adipose tissue, and pancreas, have highly similar transcriptomes, suggesting a shared lineage. FAP+ cells of skeletal muscle are the major local source of follistatin, and in bone marrow they express Cxcl12 and KitL. Experimental ablation of these cells causes loss of muscle mass and a reduction of B-lymphopoiesis and erythropoiesis, revealing their essential functions in maintaining normal muscle mass and hematopoiesis, respectively. Remarkably, these cells are altered at these sites in transplantable and spontaneous mouse models of cancer-induced cachexia and anemia. Thus, the FAP+ stromal cell may have roles in two adverse consequences of cancer: their acquisition by tumors may cause failure of immunosurveillance, and their alteration in normal tissues contributes to the paraneoplastic syndromes of cachexia and anemia.

Publisher

Rockefeller University Press

Subject

Immunology,Immunology and Allergy

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