Binju Wang, Ph. D
Affiliations: | Institute of Chemistry | Hebrew University, Jerusalem, Jerusalem, Israel |
Area:
Computational ChemistryGoogle:
"Binju Wang"Mean distance: 8.6 | S | N | B | C | P |
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Publications
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Peng W, Yan S, Zhang X, et al. (2022) How Do Preorganized Electric Fields Function in Catalytic Cycles? The Case of the Enzyme Tyrosine Hydroxylase. Journal of the American Chemical Society. 144: 20484-20494 |
Wu P, Gu Y, Liao L, et al. (2022) Coordination Switch Drives Selective C-S Bond Formation by the Non-heme Sulfoxide Synthases. Angewandte Chemie (International Ed. in English) |
Wang B, Zhang X, Fang W, et al. (2022) How Do Metalloproteins Tame the Fenton Reaction and Utilize •OH Radicals in Constructive Manners? Accounts of Chemical Research. 55: 2280-2290 |
Wang B, Wu P, Shaik S. (2022) Critical Roles of Exchange and Superexchange Interactions in Dictating Electron Transfer and Reactivity in Metalloenzymes. The Journal of Physical Chemistry Letters. 13: 2871-2877 |
Dubey KD, Wang B, Si Y, et al. (2021) Editorial: Molecular Dynamics Simulations of Metalloproteins and Metalloenzymes. Frontiers in Chemistry. 9: 789299 |
Feng J, Shaik S, Wang B. (2021) Spin-regulated Electron Transfer and Exchange-enhanced Reactivity in Fe4S4-mediated Redox Reaction of the Dph2 Enzyme During the Biosynthesis of Diphthamide. Angewandte Chemie (International Ed. in English) |
Wang Z, Shaik S, Wang B. (2021) Conformational Motion of Ferredoxin Enables Efficient Electron Transfer to Heme in the Full-Length P450. Journal of the American Chemical Society |
Chen CC, Xue J, Peng W, et al. (2020) Structural insights into thebaine synthase 2 catalysis. Biochemical and Biophysical Research Communications. 529: 156-161 |
Wang JB, Huang Q, Peng W, et al. (2020) P450-BM3 Catalyzed Sulfoxidation versus Hydroxylation: A Common or Two Different Catalytically Active Species? Journal of the American Chemical Society |
Lu J, Wang B, Shaik S, et al. (2020) QM/MM Calculations Reveal the Important Role of α-Heteroatom Substituents in Controlling Selectivity of Mononuclear Nonheme HppE-Catalyzed Reactions Acs Catalysis. 10: 9521-9532 |