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Your search keyword '"Rafael E. O. Rocha"' showing total 16 results

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16 results on '"Rafael E. O. Rocha"'

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1. Evaluating Known Zika Virus NS2B-NS3 Protease Inhibitor Scaffolds via In Silico Screening and Biochemical Assays

2. Propedia: a database for protein–peptide identification based on a hybrid clustering algorithm

3. Proteus: An algorithm for proposing stabilizing mutation pairs based on interactions observed in known protein 3D structures

4. Glutantβase: a database for improving the rational design of glucose-tolerant β-glucosidases

5. Structure-Based Identification of Naphthoquinones and Derivatives as Novel Inhibitors of Main Protease Mpro and Papain-like Protease PLpro of SARS-CoV-2.

6. A higher flexibility at the SARS-CoV-2 main protease active site compared to SARS-CoV and its potentialities for new inhibitor virtual screening targeting multi-conformers

7. Structure-Based Identification of Naphthoquinones and Derivatives as Novel Inhibitors of Main Protease M

8. Propedia: a database for protein–peptide identification based on a hybrid clustering algorithm

9. Structure-based identification of naphthoquinones and derivatives as novel inhibitors of main protease Mpro and papain-like protease PLpro of SARS-CoV-2

10. Design, Synthesis and In Vitro Trypanocidal and Leishmanicidal Activities of 2‐(2‐Arylidene)hydrazono‐4‐oxothiazolidine‐5‐acetic Acid Derivatives

11. Cooperative hydrogen bonds and mobility of the non-aromatic ring as selectivity determinants for human acetylcholinesterase to similar anti-Alzheimer’s galantaminics: a computational study

12. Conformational flexibility correlates with glucose tolerance for point mutations in β-glucosidases - a computational study

13. An inexpensive and environmentally friendly staining method for semi-permanent slides from plant material probed using anatomical and computational chemistry analyses

14. Proteus: An algorithm for proposing stabilizing mutation pairs based on interactions observed in known protein 3D structures

16. Molecular Dynamics Gives New Insights into the Glucose Tolerance and Inhibition Mechanisms on β-Glucosidases

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