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Circulation Research|October 9, 2019
Role of Nitric Oxide Carried by Hemoglobin in Cardiovascular Physiology: Developments on a Three-Gas Respiratory CycleRichard T Premont, James D Reynolds, Rongli Zhang, et al.
Biochemistry|August 11, 2010
Identification of S-nitrosylated targets of thioredoxin using a quantitative proteomic approachMoran Benhar, J Will Thompson, M Arthur Moseley, et al.
Free Radical Biology & Medicine|November 4, 2008
Detection of protein S-nitrosylation with the biotin-switch techniqueMichael T Forrester, Matthew W Foster, Moran Benhar, et al.
Antioxidants & Redox Signaling|June 30, 2020
Red Blood Cell-Mediated S-Nitrosohemoglobin-Dependent Vasodilation: Lessons Learned from a β-Globin Cys93 Knock-In MouseRichard T Premont, James D Reynolds, Rongli Zhang, et al.
Handbook of Experimental Pharmacology|October 1, 2025
S-Nitrosylation of GPCR Regulatory Machinery as a Mechanism to Bias SignalingMingda Chen, Zachary W Grimmett, Richard T Premont, et al.
The Journal of Biological Chemistry|July 13, 2025
Transcriptional responses to nitric oxide are widescale and source-dependentJoseph C Schindler, Puneet Seth, Richard T Premont, et al.
Molecular Cell|August 5, 2022
S-nitrosylation is required for β2AR desensitization and experimental asthmaFabio V Fonseca, Thomas M Raffay, Kunhong Xiao, et al.
Nature Medicine|August 23, 2011
Host S-nitrosylation inhibits clostridial small molecule-activated glucosylating toxinsTor C Savidge, Petri Urvil, Numan Oezguen, et al.
Proceedings of the National Academy of Sciences of the United States of America|January 25, 2006
Nitric oxide regulates endocytosis by S-nitrosylation of dynaminGaofeng Wang, Nader H Moniri, Kentaro Ozawa, et al.
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