%0 Journal Article %A Tan, Yew-Foon %A Millar, A. Harvey %A Taylor, Nicolas L. %D 2012 %T Components of Mitochondrial Oxidative Phosphorylation Vary in Abundance Following Exposure to Cold and Chemical Stresses %U https://acs.figshare.com/articles/journal_contribution/Components_of_Mitochondrial_Oxidative_Phosphorylation_Vary_in_Abundance_Following_Exposure_to_Cold_and_Chemical_Stresses/2507992 %R 10.1021/pr3003535.s003 %2 https://acs.figshare.com/ndownloader/files/4150927 %K UCP %K NAD %K Mitochondrial Oxidative Phosphorylation %K Quantitative proteomics studies %K Chemical StressesPlant mitochondria %K stress %K integral membrane proteome %K metabolite transport %K oxidative phosphorylation %K protein abundance changes %K AOX %X Plant mitochondria are highly responsive organelles that vary their metabolism in response to a wide range of chemical and environmental conditions. Quantitative proteomics studies have begun to allow the analysis of these large-scale protein changes in mitochondria. However studies of the integral membrane proteome of plant mitochondria, arguably the site responsible for the most fundamental mitochondrial processes of oxidative phosphorylation, protein import and metabolite transport, remain a technical challenge. Here we have investigated the changes in protein abundance in response to a number of chemical stresses and cold. In addition to refining the subcellular localization of 66 proteins, we have been able to characterize 596 protein × treatment combinations following a range of stresses. To date it has been assumed that the main mitochondrial response to stress involved the induction of alternative respiratory proteins such as AOX, UCPs, and alternative NAD­(P)H dehydrogenases; we now provide evidence for a number of very specific protein abundance changes that have not been highlighted previously by transcript studies. This includes both previously characterized stress responsive proteins as well as major components of oxidative phosphorylation, protein import/export, and metabolite transport. %I ACS Publications