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Adaptive Potential of the Heme Oxygenase/Carbon Monoxide Pathway During Hypoxia

  • Michael S. Tift
  • , Rodrigo W. Alves de Souza
  • , Janick Weber
  • , Erica C. Heinrich
  • , Francisco C. Villafuerte
  • , Atul Malhotra
  • , Leo E. Otterbein
  • , Tatum S. Simonson
  • University of North Carolina Wilmington
  • Harvard Medical School
  • University of California Riverside
  • University of California la Jolla

Research output: Contribution to journalArticlepeer-review

28 Scopus citations

Abstract

Heme oxygenase (HO) enzymes catalyze heme into biliverdin, releasing carbon monoxide (CO) and iron into circulation. These byproducts of heme degradation can have potent cytoprotective effects in the face of stressors such as hypoxia and ischemia-reperfusion events. The potential for exogenous use of CO as a therapeutic agent has received increasing attention throughout the past few decades. Further, HO and CO are noted as putatively adaptive in diving mammals and certain high-altitude human populations that are frequently exposed to hypoxia and/or ischemia-reperfusion events, suggesting that HO and endogenous CO afford an evolutionary advantage for hypoxia tolerance and are critical in cell survival and injury avoidance. Our goal is to describe the importance of examining HO and CO in several systems, the physiological links, and the genetic factors that underlie variation in the HO/CO pathway. Finally, we emphasize the ways in which evolutionary perspectives may enhance our understanding of the HO/CO pathway in the context of diverse clinical settings.

Original languageEnglish
Article number886
JournalFrontiers in Physiology
Volume11
DOIs
StatePublished - 22 Jul 2020

Keywords

  • altitude
  • carbon monoxide
  • cytoprotection
  • diving
  • evolution
  • heme oxygenase
  • hypoxia

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