HIF-1–dependent repression of equilibrative nucleoside transporter (ENT) in hypoxia

Author:

Eltzschig Holger K.1,Abdulla Parween2,Hoffman Edgar1,Hamilton Kathryn E.3,Daniels Dionne3,Schönfeld Caroline4,Löffler Michaela1,Reyes German2,Duszenko Michael4,Karhausen Jorn1,Robinson Andreas3,Westerman Karen A.5,Coe Imogen R.2,Colgan Sean P.3

Affiliation:

1. Department of Anesthesiology and Intensive Care Medicine, Tübingen University Hospital

2. Department of Biology, York University, Toronto M3J 1P3, Canada

3. Center for Experimental Therapeutics and Reperfusion Injury, Perioperative and Pain Medicine, Brigham and Women's Hospital, Harvard Medical School, Boston, MA 02115

4. Physiologisch-chemisches Institut der Universität Tübingen, D-72076, Tübingen, Germany

5. Department of Anesthesiology, Perioperative and Pain Medicine, Brigham and Women's Hospital, Harvard Medical School, Boston, MA 02115

Abstract

Extracellular adenosine (Ado) has been implicated as central signaling molecule during conditions of limited oxygen availability (hypoxia), regulating physiologic outcomes as diverse as vascular leak, leukocyte activation, and accumulation. Presently, the molecular mechanisms that elevate extracellular Ado during hypoxia are unclear. In the present study, we pursued the hypothesis that diminished uptake of Ado effectively enhances extracellular Ado signaling. Initial studies indicated that the half-life of Ado was increased by as much as fivefold after exposure of endothelia to hypoxia. Examination of expressional levels of the equilibrative nucleoside transporter (ENT)1 and ENT2 revealed a transcriptionally dependent decrease in mRNA, protein, and function in endothelia and epithelia. Examination of the ENT1 promoter identified a hypoxia inducible factor 1 (HIF-1)–dependent repression of ENT1 during hypoxia. Using in vitro and in vivo models of Ado signaling, we revealed that decreased Ado uptake promotes vascular barrier and dampens neutrophil tissue accumulation during hypoxia. Moreover, epithelial Hif1α mutant animals displayed increased epithelial ENT1 expression. Together, these results identify transcriptional repression of ENT as an innate mechanism to elevate extracellular Ado during hypoxia.

Publisher

Rockefeller University Press

Subject

Immunology,Immunology and Allergy

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