Full text

Turn on search term navigation

Copyright Nature Publishing Group Apr 2014

Abstract

Sustained cellular function and viability of high-energy demanding post-mitotic cells rely on the continuous supply of ATP. The utilization of mitochondrial oxidative phosphorylation for efficient ATP generation is a function of oxygen levels. As such, oxygen deprivation, in physiological or pathological settings, has profound effects on cell metabolism and survival. Here we show that mild extracellular acidosis, a physiological consequence of anaerobic metabolism, can reprogramme the mitochondrial metabolic pathway to preserve efficient ATP production regardless of oxygen levels. Acidosis initiates a rapid and reversible homeostatic programme that restructures mitochondria, by regulating mitochondrial dynamics and cristae architecture, to reconfigure mitochondrial efficiency, maintain mitochondrial function and cell survival. Preventing mitochondrial remodelling results in mitochondrial dysfunction, fragmentation and cell death. Our findings challenge the notion that oxygen availability is a key limiting factor in oxidative metabolism and brings forth the concept that mitochondrial morphology can dictate the bioenergetic status of post-mitotic cells.

Details

Title
Acidosis overrides oxygen deprivation to maintain mitochondrial function and cell survival
Author
Khacho, Mireille; Tarabay, Michelle; Patten, David; Khacho, Pamela; Maclaurin, Jason G; Guadagno, Jennifer; Bergeron, Richard; Cregan, Sean P; Harper, Mary-ellen; Park, David S; Slack, Ruth S
Pages
3550
Publication year
2014
Publication date
Apr 2014
Publisher
Nature Publishing Group
e-ISSN
20411723
Source type
Scholarly Journal
Language of publication
English
ProQuest document ID
1511568480
Copyright
Copyright Nature Publishing Group Apr 2014