CSF1R-dependent macrophages control postnatal somatic growth and organ maturation.
Animals
Bone Marrow
/ metabolism
Bone Marrow Transplantation
Disease Models, Animal
Embryo, Mammalian
Fatty Liver
/ genetics
Female
Gene Expression Regulation, Developmental
Gene Knockout Techniques
Genes, Reporter
Humans
Insulin-Like Growth Factor Binding Proteins
/ deficiency
Insulin-Like Growth Factor I
/ deficiency
Lipid Metabolism
Liver
/ metabolism
Macrophages
/ metabolism
Male
Musculoskeletal Abnormalities
/ genetics
Musculoskeletal Development
/ genetics
Osteopetrosis
/ genetics
Rats
Rats, Transgenic
Receptors, Granulocyte-Macrophage Colony-Stimulating Factor
/ deficiency
Journal
PLoS genetics
ISSN: 1553-7404
Titre abrégé: PLoS Genet
Pays: United States
ID NLM: 101239074
Informations de publication
Date de publication:
06 2021
06 2021
Historique:
received:
08
04
2021
accepted:
17
05
2021
revised:
15
06
2021
pubmed:
4
6
2021
medline:
15
10
2021
entrez:
3
6
2021
Statut:
epublish
Résumé
Homozygous mutation of the Csf1r locus (Csf1rko) in mice, rats and humans leads to multiple postnatal developmental abnormalities. To enable analysis of the mechanisms underlying the phenotypic impacts of Csf1r mutation, we bred a rat Csf1rko allele to the inbred dark agouti (DA) genetic background and to a Csf1r-mApple reporter transgene. The Csf1rko led to almost complete loss of embryonic macrophages and ablation of most adult tissue macrophage populations. We extended previous analysis of the Csf1rko phenotype to early postnatal development to reveal impacts on musculoskeletal development and proliferation and morphogenesis in multiple organs. Expression profiling of 3-week old wild-type (WT) and Csf1rko livers identified 2760 differentially expressed genes associated with the loss of macrophages, severe hypoplasia, delayed hepatocyte maturation, disrupted lipid metabolism and the IGF1/IGF binding protein system. Older Csf1rko rats developed severe hepatic steatosis. Consistent with the developmental delay in the liver Csf1rko rats had greatly-reduced circulating IGF1. Transfer of WT bone marrow (BM) cells at weaning without conditioning repopulated resident macrophages in all organs, including microglia in the brain, and reversed the mutant phenotypes enabling long term survival and fertility. WT BM transfer restored osteoclasts, eliminated osteopetrosis, restored bone marrow cellularity and architecture and reversed granulocytosis and B cell deficiency. Csf1rko rats had an elevated circulating CSF1 concentration which was rapidly reduced to WT levels following BM transfer. However, CD43hi non-classical monocytes, absent in the Csf1rko, were not rescued and bone marrow progenitors remained unresponsive to CSF1. The results demonstrate that the Csf1rko phenotype is autonomous to BM-derived cells and indicate that BM contains a progenitor of tissue macrophages distinct from hematopoietic stem cells. The model provides a unique system in which to define the pathways of development of resident tissue macrophages and their local and systemic roles in growth and organ maturation.
Identifiants
pubmed: 34081701
doi: 10.1371/journal.pgen.1009605
pii: PGENETICS-D-21-00482
pmc: PMC8205168
doi:
Substances chimiques
Insulin-Like Growth Factor Binding Proteins
0
Receptors, Granulocyte-Macrophage Colony-Stimulating Factor
0
insulin-like growth factor-1, rat
0
Insulin-Like Growth Factor I
67763-96-6
Types de publication
Journal Article
Research Support, Non-U.S. Gov't
Langues
eng
Sous-ensembles de citation
IM
Pagination
e1009605Subventions
Organisme : Medical Research Council
ID : MR/M019969/1
Pays : United Kingdom
Déclaration de conflit d'intérêts
The authors have declared that no competing interests exist.
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