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Reactive oxygen species (ROS) are increasingly recognised as important regulators of cellular biology through the oxidative modification of protein cysteine residues. Comprehensive identification of redox-regulated proteins and cellular pathways are crucial to understand ROS-mediated events. Here, w...
ORGANISM(S): Mus musculus (Mouse) 
2018-03-06 | PXD006363 | Pride
Reactive oxygen species (ROS) are increasingly recognised as important regulators of cellular biology through the oxidative modification of protein cysteine residues. Comprehensive identification of redox-regulated proteins and cellular pathways are crucial to understand ROS-mediated events. Here, w...
ORGANISM(S): Mus musculus (Mouse) 
2018-03-06 | PXD006372 | Pride
Reactive oxygen species (ROS) are increasingly recognised as important regulators of cellular biology through the oxidative modification of protein cysteine residues. Comprehensive identification of redox-regulated proteins and cellular pathways are crucial to understand ROS-mediated events. Here, w...
ORGANISM(S): Mus musculus (Mouse) 
2018-03-06 | PXD006373 | Pride
The protein cysteine residue is one of the amino acids most susceptible to oxidative modifications, frequently caused by oxidative stress. Several applications have enabled cysteine-targeted proteomics analysis with simultaneous detection and quantitation. In this study, we employed a quantitative a...
ORGANISM(S): Homo sapiens (Human) 
2016-07-18 | PXD004303 | Pride
Two cell-lines of Leishmania mexicana were investigated using a TMT-based approach; wild-type and an attenuated H-line. Half of each sample was fully reduced and all cysteine residues were labelled with the cysteine-reactive iodoTMT reagent, while the other half was reacted with N-ethylmaleimide to ...
ORGANISM(S): Leishmania mexicana MHOM/GT/2001/U1103 
2018-11-23 | PXD010938 | Pride
Post-translational oxidation of methionine residues can destabilize proteins or modify their functions. Although levels of methionine oxidation can provide important information regarding the structural integrity and regulation of proteins, their quantitation is often challenging as analytical proce...
ORGANISM(S): Escherichia coli 
2024-02-08 | PXD045497 | Pride
In the U.S., alcohol-associated liver disease (ALD) impacts millions of people and is a major healthcare burden. While the pathology of ALD is unmistakable, the molecular mechanisms underlying ethanol hepatotoxicity are not fully understood. Hepatic ethanol metabolism is intimately linked with alte...
ORGANISM(S): Mus musculus (Mouse) 
2024-09-19 | PXD042070 | Pride
Alcohol consumption induces hepatocyte damage through complex processes involving oxidative stress and disrupted metabolism. Combined, these factors alter proteomic and epigenetic marks providing a critical opportunity to identify therapeutic targets. Indeed, alcohol-induced protein acetylation is a...
ORGANISM(S): Mus musculus (Mouse) 
2024-12-17 | PXD054686 | Pride
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