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Updated: Mar 1, 2026

Application of Aorta-gonad-mesonephros Explant Culture System in Developmental Hematopoiesis
Published on: November 3, 2017
Inter-organ signalling by HRG-7 promotes systemic haem homeostasis
Jason Sinclair1, Katherine Pinter1, Tamika Samuel1
1Department of Animal &Avian Sciences and Department of Cell Biology &Molecular Genetics, University of Maryland, College Park, Maryland 20742, USA.
None:
Growing evidence in vertebrates predicts that cellular haem levels in animals are maintained not only by a cell's internal capacity for haem synthesis in a cell-autonomous manner, but also by an inter-organ haem trafficking network through cell-non-autonomous regulation. Using Caenorhabditis elegans, a genetically and optically amenable animal model for visualizing haem-dependent signalling, we show that HRG-7, a protein with homology to aspartic proteases, mediates inter-organ signalling between the intestine and extra-intestinal tissues. Intestinal HRG-7 functions as a secreted signalling factor during haem starvation in extra-intestinal tissues and is regulated through a DBL-1, homologous to BMP5, dependent signal from neurons. Given the evidence that vertebrate homologues exist for each of the components of the HRG-7-mediated signalling pathway, it is conceivable that the cell-non-autonomous signalling framework that we uncovered in C. elegans may have functional relevance for inter-organ regulation of iron and haem metabolism in humans.
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