Protein Tyrosine Phosphatases Are Regulated by Mononuclear Iron Dicitrate

The involvement of macrophages (Mφs) as host, accessory, and effector cells in the development of infectious diseases, together with their central role in iron homeostasis, place these immune cells as key players in the interface between iron and infection. Having previously shown that the functiona...

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Veröffentlicht in:The Journal of biological chemistry 2010-08, Vol.285 (32), p.24620-24628
Hauptverfasser: Gomez, Maria Adelaida, Alisaraie, Laleh, Shio, Marina Tiemi, Berghuis, Albert M., Lebrun, Colette, Gautier-Luneau, Isabelle, Olivier, Martin
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Sprache:eng
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Zusammenfassung:The involvement of macrophages (Mφs) as host, accessory, and effector cells in the development of infectious diseases, together with their central role in iron homeostasis, place these immune cells as key players in the interface between iron and infection. Having previously shown that the functional expression of NRAMP-1 results in increased protein phosphorylation mediated in part by an iron-dependent inhibition of Mφ protein-tyrosine phosphatase (PTP) activity, we sought to study the mechanism(s) underlying this specific event. Herein we have identified the mononuclear dicitrate iron complex [Fe(cit)2H4-x](1+x)− as the species responsible for the specific inhibition of Mφ PTP activity. By using biochemical and computational approaches, we show that [Fe(cit)2]5− targets the catalytic pocket of the PTP SHP-1, competitively inhibiting its interaction with an incoming phosphosubstrate. In vitro and in vivo inhibition of PTP activity by iron-citrate results in protein hyperphosphorylation and enhanced MAPK signaling in response to LPS stimulation. We propose that iron-citrate-mediated PTP inhibition represents a novel and biologically relevant regulatory mechanism of signal transduction.
ISSN:0021-9258
1083-351X
DOI:10.1074/jbc.M110.107037