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HIV-1
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RNDr. Milan Kožíšek Ph.D.
External academic staff at Faculty of Science
23 publications
Publications
publication
Molecular Characterization of Clinical Isolates of Human Immunodeficiency Virus Resistant to the Protease Inhibitor Darunavir
2009 |
Faculty of Science
publication
Ninety-nine is not enough: Molecular characterization of inhibitor-resistant human immunodeficiency virus type 1 protease mutants with insertions in the flap region
2008 |
Faculty of Science
publication
Ninety Nine is Not Enough: Molecular Characterization of Inhibitor Resistant HIV-1 Protease Mutants with Insertions in the Flap Region.
2008 |
Faculty of Science
publication
Molecular analysis of the HIV-1 resistance development: enzymatic activities, crystal structures, and thermodynamics of nelfinavir-resistant HIV protease mutants
2007 |
Faculty of Science
publication
Bioisosteres of Luteolin: New Class of Potential Inhibitors of Influenza Virus RNA-Polymerase
2022 |
Faculty of Science, Faculty of Physical Education and Sport
publication
Structural characterization of the interaction between the C-terminal domain of the influenza polymerase PA subunit and an optimized small peptide inhibitor
2021 |
Faculty of Science, Faculty of Physical Education and Sport, Central Library of Charles University
publication
Structural and Thermodynamic Analysis of the Resistance Development to Pimodivir (VX-787), the Clinical Inhibitor of Cap Binding to PB2 Subunit of Influenza A Polymerase
2021 |
Faculty of Science, Faculty of Physical Education and Sport, Central Library of Charles University
publication
Synthesis and In Vitro Evaluation of C-7 and C-8 Luteolin Derivatives as Influenza Endonuclease Inhibitors
+1
2021 |
Faculty of Science, Faculty of Physical Education and Sport, Central Library of Charles University
publication
Protein-Ligand Interactions in the STING Binding Site Probed by Rationally Designed Single-Point Mutations: Experiment and Theory
2021 |
Faculty of Science, Central Library of Charles University
publication
Ligand Strain and Its Conformational Complexity Is a Major Factor in the Binding of Cyclic Dinucleotides to STING Protein
2021 |
Central Library of Charles University
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