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26 results on '"Jinfeng Wang"'

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1. Hydrogen exchange in unligated and ligated staphylococcal nuclease

2. Backbone 1H and 15N resonances and secondary structure of the unligated enzyme as identified by three-dimensional NMR spectroscopy

3. 1H, 13C, and 15N chemical shift assignments for the unligated enzyme and analysis of chemical shift changes that accompany formation of the nuclease-thymidine 3'5'-biphosphate-calcium ternary complex

4. Binding of reduced nicotinamide adenine dinucleotide phosphate destabilizes the iron-sulfur clusters of human mitoNEET

5. Importance of the C-terminal loop L137-S141 for the folding and folding stability of Staphylococcal nuclease

6. The native-like interactions between SNase121 and Snase(111-143) fragments induce the recovery of their native-like structures and the ability to degrade DNA

7. NMR Studies of the Interaction between Human Programmed Cell Death 5 and Human p53

8. A stabilizing [alpha]/[beta]-hydrophobic core greatly contributes to hyperthermostability of archaeal [P62A]Ssh10b

9. Solution Structure of LCI, a Novel Antimicrobial Peptide from Bacillus subtilis

10. Restricted backbone conformational and motional flexibilities of loops containing peptidyl-proline bonds dominate the enzyme activity of staphylococcal nuclease

11. The Native-like Interactions between SNase121 and SNase(111−143) Fragments Induce the Recovery of Their Native-like Structures and the Ability to Degrade DNA

12. A Stabilizing α/β-Hydrophobic Core Greatly Contributes to Hyperthermostability of Archaeal [P62A]Ssh10b

13. Anti-apoptosis proteins Mcl-1 and Bcl-xL have different p53-binding profiles

14. Hydrogen exchange in unligated and ligated staphylococcal nuclease

15. Binding of reduced nicotinamide adenine dinucleotide phosphate destabilizes the iron−sulfur clusters of human mitoNEET

16. Importance of the C-terminal loop L137-S141 for the folding and folding stability of staphylococcal nuclease

17. Solution studies of staphylococcal nuclease H124L. 2. Proton, carbon-13, and nitrogen-15 chemical shift assignments for the unligated enzyme and analysis of chemical shift changes that accompany formation of the nuclease-thymidine 3',5'-bisphosphate-calcium ternary complex

18. Solution studies of staphylococcal nuclease H124L. 1. Backbone proton and nitrogen-15 resonances and secondary structure of the unligated enzyme as identified by three-dimensional NMR spectroscopy

19. Two-dimensional NMR studies of staphylococcal nuclease: evidence for conformational heterogeneity from hydrogen-1, carbon-13, and nitrogen-15 spin system assignments of the aromatic amino acids in the nuclease H124L-thymidine 3',5'-bisphosphate-calcium(2+) ternary complex

20. Two-dimensional NMR studies of staphylococcal nuclease. 2. Sequence-specific assignments of carbon-13 and nitrogen-15 signals from the nuclease H124L-thymidine 3',5'-bisphosphate-calcium ternary complex

21. Two-dimensional NMR studies of Staphylococcal nuclease. 1. Sequence-specific assignments of hydrogen-1 signals and solution structure of the nuclease H124L-thymidine 3',5'-bisphosphate-calcium ternary complex

22. Solution structure of PAFP-S: a new knottin-type antifungal peptide from the seeds of Phytolacca americana

25. Solution Structure of LCI, a Novel Antimicrobial Peptide from Bacillus subtilis.

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