Intracellular messenger function of hydrogen peroxide and its regulation by peroxiredoxins SG Rhee, SW Kang, W Jeong, TS Chang, KS Yang, HA Woo Current opinion in cell biology 17 (2), 183-189, 2005 | 880 | 2005 |
Inactivation of peroxiredoxin I by phosphorylation allows localized H2O2 accumulation for cell signaling HA Woo, SH Yim, DH Shin, D Kang, DY Yu, SG Rhee Cell 140 (4), 517-528, 2010 | 694 | 2010 |
Peroxiredoxin functions as a peroxidase and a regulator and sensor of local peroxides SG Rhee, HA Woo, IS Kil, SH Bae Journal of Biological Chemistry 287 (7), 4403-4410, 2012 | 656 | 2012 |
Reversing the inactivation of peroxiredoxins caused by cysteine sulfinic acid formation HA Woo, HZ Chae, SC Hwang, KS Yang, SW Kang, K Kim, SG Rhee Science 300 (5619), 653-656, 2003 | 633 | 2003 |
Inactivation of human peroxiredoxin I during catalysis as the result of the oxidation of the catalytic site cysteine to cysteine-sulfinic acid KS Yang, SW Kang, HA Woo, SC Hwang, HZ Chae, K Kim, SG Rhee Journal of Biological Chemistry 277 (41), 38029-38036, 2002 | 518 | 2002 |
Multiple functions of peroxiredoxins: peroxidases, sensors and regulators of the intracellular messenger H2O2, and protein chaperones SG Rhee, HA Woo Mary Ann Liebert, Inc. 140 Huguenot Street, 3rd Floor New Rochelle, NY 10801 USA, 2011 | 485 | 2011 |
Controlled Elimination of Intracellular H2O2: Regulation of Peroxiredoxin, Catalase, and Glutathione Peroxidase via Post-translational Modification SG Rhee, KS Yang, SW Kang, HA Woo, TS Chang Antioxidants & redox signaling 7 (5-6), 619-626, 2005 | 468 | 2005 |
Characterization of mammalian sulfiredoxin and its reactivation of hyperoxidized peroxiredoxin through reduction of cysteine sulfinic acid in the active site to cysteine TS Chang, W Jeong, HA Woo, SM Lee, S Park, SG Rhee Journal of Biological Chemistry 279 (49), 50994-51001, 2004 | 424 | 2004 |
Reduction of cysteine sulfinic acid by sulfiredoxin is specific to 2-cys peroxiredoxins HA Woo, W Jeong, TS Chang, KJ Park, SJ Park, JS Yang, SG Rhee Journal of Biological Chemistry 280 (5), 3125-3128, 2005 | 377 | 2005 |
Reversible oxidation of the active site cysteine of peroxiredoxins to cysteine sulfinic acid: immunoblot detection with antibodies specific for the hyperoxidized cysteine … HA Woo, SW Kang, HK Kim, KS Yang, HZ Chae, SG Rhee Journal of Biological Chemistry 278 (48), 47361-47364, 2003 | 281 | 2003 |
Engineered ionizable lipid nanoparticles for targeted delivery of RNA therapeutics into different types of cells in the liver M Kim, M Jeong, S Hur, Y Cho, J Park, H Jung, Y Seo, HA Woo, KT Nam, ... Science advances 7 (9), eabf4398, 2021 | 255 | 2021 |
Irreversible oxidation of the active-site cysteine of peroxiredoxin to cysteine sulfonic acid for enhanced molecular chaperone activity∗ JC Lim, HI Choi, YS Park, HW Nam, HA Woo, KS Kwon, YS Kim, SG Rhee, ... Journal of Biological Chemistry 283 (43), 28873-28880, 2008 | 223 | 2008 |
Feedback control of adrenal steroidogenesis via H2O2-dependent, reversible inactivation of peroxiredoxin III in mitochondria IS Kil, SK Lee, KW Ryu, HA Woo, MC Hu, SH Bae, SG Rhee Molecular cell 46 (5), 584-594, 2012 | 188 | 2012 |
Sulfiredoxin, the cysteine sulfinic acid reductase specific to 2-Cys peroxiredoxin: its discovery, mechanism of action, and biological significance SG Rhee, W Jeong, TS Chang, HA Woo Kidney International 72, S3-S8, 2007 | 188 | 2007 |
Peroxiredoxin 3 is a key molecule regulating adipocyte oxidative stress, mitochondrial biogenesis, and adipokine expression JY Huh, Y Kim, J Jeong, J Park, I Kim, KH Huh, YS Kim, HA Woo, ... Antioxidants & redox signaling 16 (3), 229-243, 2012 | 167 | 2012 |
Irreversible Inactivation of Glutathione Peroxidase 1 and Reversible Inactivation of Peroxiredoxin II by H2O2 in Red Blood Cells CS Cho, S Lee, GT Lee, HA Woo, EJ Choi, SG Rhee Antioxidants & redox signaling 12 (11), 1235-1246, 2010 | 157 | 2010 |
EW-7197 inhibits hepatic, renal, and pulmonary fibrosis by blocking TGF-β/Smad and ROS signaling SA Park, MJ Kim, SY Park, JS Kim, SJ Lee, HA Woo, DK Kim, JS Nam, ... Cellular and Molecular Life Sciences 72, 2023-2039, 2015 | 153 | 2015 |
The Role of Peroxiredoxins in the Transduction of H2O2 Signals SG Rhee, HA Woo, D Kang Antioxidants & redox signaling 28 (7), 537-557, 2018 | 134 | 2018 |
Circadian rhythm of hyperoxidized peroxiredoxin II is determined by hemoglobin autoxidation and the 20S proteasome in red blood cells CS Cho, HJ Yoon, JY Kim, HA Woo, SG Rhee Proceedings of the National Academy of Sciences 111 (33), 12043-12048, 2014 | 134 | 2014 |
Sestrin 2 is not a reductase for cysteine sulfinic acid of peroxiredoxins HA Woo, SH Bae, S Park, SG Rhee Antioxidants & redox signaling 11 (4), 739-745, 2009 | 110 | 2009 |