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18 results on '"Zheng, Ya-Jun"'

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1. Direct Mass Spectrometric Analysis of Hydrogen Sulfide in Complex Oil Samples

3. Structural definition of the active site and catalytic mechanism of 3,4-dihydroxy-2-butanone-4-phosphate synthase

4. Roles of substrate distortion and intramolecular hydrogen bonding in enzymatic catalysis by scytalone dehydratase

5. Stereochemistry of the enolization of scytalone by scytalone dehydratase

6. Theoretical investigation of the hydride transfer from formate to NAD+ and the implications for the catalytic mechanism of formate dehydrogenase

7. Molecular dynamics simulations of ground and transition states for the SN2 displacement of Cl- from 1,2-dichloroethane at the active site of Xanthobacter autotrophicus haloalkane dehalogenase

8. A theoretical examination of the factors controlling the catalytic efficiency of a transmethylation enzyme: Catechol O-Methyltransferase

9. On the dehalogenation mechanism of 4-chlorobenzoyl CoA by 4-chlorobenzoyl coA dehalogenase: insights from the study based on the nonenzymatic reaction

11. Mechanism of nucleophilic aromatic substitution of 1-chloro-2,4-dinitrobenzene by glutathione in the gas phase and in solution: implications for the mode of action of glutathione S-transferases

12. What happens to salt-bridges in nonaqueous environments: insights from quantum mechanics calculations

13. A theoretical study of the structures of flavin in different oxidation and protonation states

14. A molecular dynamics and quantum mechanics analysis of the effect of DMSO on enzyme structure and dynamics: subtilisin

15. Mechanism of the human carbonic anhydrase II catalyzed hydration of carbon dioxide

16. Reaction of 2,2-bis(trifluoromethyl)-1,1-dicyanoethylene with 6,6-dimethylfulvene: cycloadditions and a rearrangement

17. A molecular dynamics study of the effect of carbon tetrachloride on enzyme structure and dynamics: subtilisin

18. Rapid enzyme-catalyzed heterolytic C-H bond cleavage by a base strength amplification mechanism: a theoretical examination of the mechanism of oxidation of vitamin K

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