Hypoxanthine is a potent promoter of epithelial cell repair in both gut and skin across the phylogenetic tree including humans, mice, zebrafish, and fruit flies and promotes similar ATP production and cellular proliferation in eukaryotic and microbial recipients.
Abstract
Apoptosis in the gut triggers an expansion in the Enterobacteriaceae family of bacteria, causing both prolonged tissue injury and delayed repair. However, the mechanisms linking the Enterobacteriaceae bloom and subsequent deleterious tissue response are relatively unknown. Here, we establish purines as a major component of the apoptotic secretome that are consumed by bacteria. Explicitly, we identify hypoxanthine as a critical metabolite that is taken up and metabolised by both pathogenic and commensal species within the Enterobacteriaceae family. Epithelial cells release hypoxanthine into the extracellular space during early stages of apoptosis via the upregulation of equilibrative nucleoside transporters 1/2 (ENT1/2). Critically, beyond simply linking host and microbe, we delineate a connection between the release of hypoxanthine from the dying cell and the ability of the host to repair damaged epithelial tissue. Hypoxanthine is a potent promoter of epithelial cell repair in both gut and skin across the phylogenetic tree including humans, mice, zebrafish, and fruit flies and promotes similar ATP production and cellular proliferation in eukaryotic and microbial recipients. Thus, the preferential utilisation of hypoxanthine by the Enterobacteriaceae directly competes with the host for a core reparative signal.
It is shown that adult Drosophila midgut ISCs recognise pathogenic bacteria through the peptidoglycan recognition proteins, PGRP-LC and PGRP-LE, and translate this into their proliferation by stimulating Imd-Mkk3-p38 signalling.
Bhavin Uttekar, Marie Srotyr, Sanket Sudam Ravale et al.· PLoS Biology· 0 citations
The commensal fungus
Candida albicans
, a natural inhabitant of the human gut, can transition to a pathogenic state and disseminate into the blood. Disruption of the intestinal mucosal barrier, particularly through the impairment of epithelial cell integrity and intercellular junctions, is a critical step in th...
Ya-Hui Feng, Wen-Jie Fang, Ning Zhang et al.· Frontiers in Microbiology· 0 citations
The intestinal epithelium is exposed to diverse combinations of microbiota-derived compounds; however, the mechanisms by which the host integrates these signals remain poorly defined. Studying two highly abundant microbial metabolites, we identified the purine metabolite hypoxanthine as an effector metabolite that dire...
Yang Xiao, T. Louwies, R. Mars et al.· Proceedings of the National...· 0 citations
The liver rarely fails in isolation. Over the past decade, it has become difficult to discuss hepatic fibrosis without also discussing the gut — the two organs are joined by the portal vein so intimately that disturbances on one side of the circuit are, sooner or later, felt on the other. This review draws together tha...