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Methods in Molecular Biology (Clifton, N.J.)|March 31, 2018
A Proteomics Workflow for Dual Labeling Biotin Switch Assay to Detect and Quantify Protein S-NitroylationHeaseung Sophia Chung, Christopher I Murray, Jennifer E Van Eyk
Methods in Molecular Biology (Clifton, N.J.)|April 23, 2013
Quantification of mitochondrial S-nitrosylation by CysTMT⁶ switch assayChristopher I Murray, Hea Seung Chung, Helge Uhrigshardt, et al.
Mass Spectrometry Reviews|November 17, 2021
Automated proteomic sample preparation: The key component for high throughput and quantitative mass spectrometry analysisQin Fu, Christopher I Murray, Oleg A Karpov, et al.
Trends in Cardiovascular Medicine|January 15, 2013
Redox regulation of mitochondrial ATP synthaseSheng-Bing Wang, Christopher I Murray, Heaseung S Chung, et al.
Circulation Research|April 28, 2018
Precision Profiling of the Cardiovascular Post-Translationally Modified Proteome: Where There Is a Will, There Is a WayJustyna Fert-Bober, Christopher I Murray, Sarah J Parker, et al.
The Journal of Biological Chemistry|January 12, 2012
Identification of novel interaction between annexin A2 and keratin 17: evidence for reciprocal regulationByung-Min Chung, Christopher I Murray, Jennifer E Van Eyk, et al.
Molecular & Cellular Proteomics : MCP|December 1, 2011
Identification and quantification of S-nitrosylation by cysteine reactive tandem mass tag switch assayChristopher I Murray, Helge Uhrigshardt, Robert N O'Meally, et al.
Circulation Research|January 19, 2013
Cysteine oxidative posttranslational modifications: emerging regulation in the cardiovascular systemHeaseung S Chung, Sheng-Bing Wang, Vidya Venkatraman, et al.
Molecular & Cellular Proteomics : MCP|November 2, 2010
Site-mapping of in vitro S-nitrosation in cardiac mitochondria: implications for cardioprotectionChristopher I Murray, Lesley A Kane, Helge Uhrigshardt, et al.
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