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Free Radical Biology & Medicine|October 13, 2010
Menadione triggers cell death through ROS-dependent mechanisms involving PARP activation without requiring apoptosisGabriel Loor, Jyothisri Kondapalli, Jacqueline M Schriewer, et al.
FASEB Journal : Official Publication of the Federation of American Societies for Experimental Biology|December 13, 2007
Hypoxia-mediated Na-K-ATPase degradation requires von Hippel Lindau proteinGuofei Zhou, Laura A Dada, Navdeep S Chandel, et al.
Biology Open|February 2, 2024
A Drosophila model of mitochondrial disease phenotypic heterogeneityLucy Granat, Debbra Y Knorr, Daniel C Ranson, et al.
Cell Metabolism|June 24, 2020
NAD+ Regeneration Rescues Lifespan, but Not Ataxia, in a Mouse Model of Brain Mitochondrial Complex I DysfunctionGregory S McElroy, Colleen R Reczek, Paul A Reyfman, et al.
Scientific Reports|March 26, 2022
Reduced expression of mitochondrial complex I subunit Ndufs2 does not impact healthspan in miceGregory S McElroy, Ram P Chakrabarty, Karis B D'Alessandro, et al.
FASEB Journal : Official Publication of the Federation of American Societies for Experimental Biology|April 26, 2012
MicroRNA-31 targets FIH-1 to positively regulate corneal epithelial glycogen metabolismHan Peng, Robert B Hamanaka, Julia Katsnelson, et al.
The Journal of Biological Chemistry|March 6, 2002
Hyperoxia-induced apoptosis does not require mitochondrial reactive oxygen species and is regulated by Bcl-2 proteinsG R Scott Budinger, May Tso, David S McClintock, et al.
American Journal of Respiratory and Critical Care Medicine|December 23, 2006
Leptin resistance protects mice from hyperoxia-induced acute lung injuryAmy Bellmeyer, Janice M Martino, Navdeep S Chandel, et al.
Science Advances|November 5, 2020
Metabolic determinants of cellular fitness dependent on mitochondrial reactive oxygen speciesHyewon Kong, Colleen R Reczek, Gregory S McElroy, et al.
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