67 results on '"Dunn, Ben M."'
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2. In Vitro Antimalarial Evaluation of Piperidine- and Piperazine-Based Chalcones: Inhibition of Falcipain-2 and Plasmepsin II Hemoglobinases Activities from Plasmodium falciparum
3. Effects of PRE and POST therapy drug‐pressure selected mutations on HIV‐1 protease conformational sampling
4. A Template-Based Approach to Inhibitors of Calpain 2, 20S Proteasome, and HIV-1 Protease
5. Preface
6. Protein Engineering
7. Computational Analysis
8. Structural and biochemical characterization of the inhibitor complexes of xenotropic murine leukemia virus-related virus protease
9. Preparation and Handling of Peptides
10. Introduction to the Aspartic Proteinase Family
11. Protein Engineering
12. Characterization of HIV‐1 subtype C I50V and I50L proteases
13. Chemical synthesis of a neurotoxic polypeptide from the sea anemone Stichodactyla helianthus+
14. HIV protease (HIV PR) inhibitor structure-activity-selectivity, and active site molecular modeling of high affinity Leu [CH(OH)CH2]Val modified viral and nonviral substrate analogs
15. Engineering the substrate specificity of rhizopuspepsin: The role of Asp 77 of fungal aspartic proteinases in facilitating the cleavage of oligopeptide substrates with lysine in P1
16. Preparation and Handling of Peptides
17. Computational Analysis
18. Peptidases
19. Protein Engineering
20. Post‐Translational Modification: Specialized Applications
21. Computational analysis of plasmepsin IV bound to an allophenylnorstatine inhibitor
22. Processing, catalytic activity and crystal structures of kumamolisin-As with an engineered active site
23. Protein Engineering
24. Production and characterization of recombinant PbPM4 and inhibition analysis of combinatorial chemistry derived compounds against PbPM4
25. Protein Engineering
26. Computational Analysis
27. Preface
28. Conventional Chromatographic Separations
29. Preparation and Handling of Peptides
30. Post‐Translational Modification: Specialized Applications
31. Expression, Purification, and Characterization of Aspartic Endopeptidases: Plasmodium Plasmepsins and “Short” Recombinant Human Pseudocathepsin
32. Peptidases
33. Structure and Mechanism of the Pepsin-Like Family of Aspartic Peptidases
34. Post‐Translational Modification: Phosphorylation and Phosphatases
35. Special delivery
36. Overview of Pepsin‐like Aspartic Peptidases
37. Preface
38. Engineered Enzymes
39. Preparation and Handling of Peptides
40. Conventional Chromatographic Separations
41. Detection and Assay Methods
42. Computational Analysis
43. Post‐Translational Modification: Specialized Applications
44. Comparison of inhibitor binding to feline and human immunodeficiency virus proteases: Structure-based drug design and the resistance problem
45. Active site specificity of plasmepsin II
46. Toward a universal inhibitor of retroviral proteases: Comparative analysis of the interactions of LP‐130 complexed with proteases from HIV‐1, FIV, and EIAV
47. Prime region subsite specificity characterization of human cathepsin D: The dominant role of position 128
48. Expression and Characterisation of Plasmepsin I from Plasmodium falciparum
49. Expression, Characterisation and Mutagenesis of the Aspartic Proteinase from Equine Infectious Anaemia Virus
50. Monomeric human cathepsin E
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