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ACS Chemical Biology|December 21, 2024
Breaking the Myth of Enzymatic AzoreductionYu-Ju Peng, Bing Xu, Steven E RokitaBiochemistry|June 11, 2025
A Split Gene Approach to Alleviate Severe Inhibition of Catalysis by SubstrateBing Xu, Zuodong Sun, Steven E RokitaProceedings of the National Academy of Sciences of the United States of America|May 15, 2024
Misregulation of bromotyrosine compromises fertility in male <i>Drosophila</i>Qi Su, Bing Xu, Xin Chen, et al.The Journal of Biological Chemistry|November 8, 2021
The minimal structure for iodotyrosine deiodinase function is defined by an outlier protein from the thermophilic bacterium Thermotoga neapolitanaZuodong Sun, Bing Xu, Shaun Spisak, et al.ACS Chemical Biology|October 25, 2025
Development of Azoreductase-Activated Precursors for Efficient Hydropersulfide Release via 1,6-EliminationAndrew Thampoe, Yu-Ju Peng, Michael S Yoo, et al.Chembiochem : a European Journal of Chemical Biology|July 23, 2016
An Activator of an Adenylation Domain Revealed by Activity but Not Sequence HomologyShalini Saha, Steven E RokitaJournal of the American Chemical Society|September 18, 2003
Excess electron transfer from an internally conjugated aromatic amine to 5-bromo-2'-deoxyuridine in DNATakeo Ito, Steven E RokitaJournal of the American Chemical Society|December 1, 2015
Single Amino Acid Switch between a Flavin-Dependent Dehalogenase and NitroreductaseArnab Mukherjee, Steven E RokitaBiochemistry|August 30, 2024
Polar Interactions between Substrate and Flavin Control Iodotyrosine Deiodinase FunctionDaniel Lemen, Steven E RokitaNature Communications|November 22, 2014
A walk along DNA using bipedal migration of a dynamic and covalent crosslinkerFazel Fakhari, Steven E RokitaPageof 223