Microbial Siderophore Enterobactin Promotes Mitochondrial Iron Uptake and Development of the Host via Interaction with ATP Synthase
- PMID: 30146159
- DOI: 10.1016/j.cell.2018.07.032
Microbial Siderophore Enterobactin Promotes Mitochondrial Iron Uptake and Development of the Host via Interaction with ATP Synthase
Abstract
Elucidating the benefits of individual microbiota-derived molecules in host animals is important for understanding the symbiosis between humans and their microbiota. The bacteria-secreted enterobactin (Ent) is an iron scavenging siderophore with presumed negative effects on hosts. However, the high prevalence of Ent-producing commensal bacteria in the human gut raises the intriguing question regarding a potential host mechanism to beneficially use Ent. We discovered an unexpected and striking role of Ent in supporting growth and the labile iron pool in C. elegans. We show that Ent promotes mitochondrial iron uptake and does so, surprisingly, by binding to the ATP synthase α subunit, which acts inside of mitochondria and independently of ATP synthase. We also demonstrated the conservation of this mechanism in mammalian cells. This study reveals a distinct paradigm for the "iron tug of war" between commensal bacteria and their hosts and an important mechanism for mitochondrial iron uptake and homeostasis.
Keywords: ATP-1; ATP-2; ATP5A1; E. coli; Lipocalin2; enterobacteria; gut microbes; iron deficiency; labile iron pool; tug of war for iron.
Copyright © 2018 Elsevier Inc. All rights reserved.
Comment in
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Bacterial Siderophores Promote Animal Host Iron Acquisition and Growth.Cell. 2018 Oct 4;175(2):311-312. doi: 10.1016/j.cell.2018.09.020. Cell. 2018. PMID: 30290138
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An unexpected benefit from E. coli: how enterobactin benefits host health.Microb Cell. 2018 Sep 27;5(10):469-471. doi: 10.15698/mic2018.10.653. Microb Cell. 2018. PMID: 30386791 Free PMC article.
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