The lymphoid-associated interleukin 7 receptor (IL7R) regulates tissue-resident macrophage development

Author:

Leung Gabriel A.1,Cool Taylor234,Valencia Clint H.5,Worthington Atesh24,Beaudin Anna E.5ORCID,Forsberg E. Camilla26ORCID

Affiliation:

1. Quantitative and Systems Biology Program, University of California-Merced, Merced, CA 95343, USA

2. Institute for the Biology of Stem Cells, University of California-Santa Cruz, Santa Cruz, CA 95064, USA

3. Department of Biological Sciences, San Jose State University, San Jose, CA 95192, USA

4. Department of Molecular, Cell, and Developmental Biology, University of California-Santa Cruz, Santa Cruz, CA 95064, USA

5. Molecular and Cell Biology Department, School of Natural Sciences, University of California-Merced, Merced, CA 95343, USA

6. Department of Biomolecular Engineering, University of California-Santa Cruz, Santa Cruz, CA 95064, USA

Abstract

ABSTRACT The discovery of a fetal origin for tissue-resident macrophages (trMacs) has inspired an intense search for the mechanisms underlying their development. Here, we performed in vivo lineage tracing of cells with an expression history of IL7Rα, a marker exclusively associated with the lymphoid lineage in adult hematopoiesis. Surprisingly, we found that Il7r-Cre labeled fetal-derived, adult trMacs. Labeling was almost complete in some tissues and partial in others. The putative progenitors of trMacs, yolk sac (YS) erythromyeloid progenitors, did not express IL7R, and YS hematopoiesis was unperturbed in IL7R-deficient mice. In contrast, tracking of IL7Rα message levels, surface expression, and Il7r-Cre-mediated labeling across fetal development revealed dynamic regulation of Il7r mRNA expression and rapid upregulation of IL7Rα surface protein upon transition from monocyte to macrophage within fetal tissues. Fetal monocyte differentiation in vitro produced IL7R+ macrophages, supporting a direct progenitor-progeny relationship. Additionally, blockade of IL7R function during late gestation specifically impaired the establishment of fetal-derived trMacs in vivo. These data provide evidence for a distinct function of IL7Rα in fetal myelopoiesis and identify IL7R as a novel regulator of trMac development.

Funder

National Institute of Diabetes and Digestive and Kidney Diseases

Alex's Lemonade Stand Foundation for Childhood Cancer

American Asthma Foundation

National Heart, Lung, and Blood Institute

California Institute for Regenerative Medicine

American Cancer Society

Publisher

The Company of Biologists

Subject

Developmental Biology,Molecular Biology

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