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NMR structure
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Mgr. Klára Grantz Šašková Ph.D.
Academic staff at Faculty of Science
1 class
34 publications
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class
Antiviral Drug Discovery
MB140P97 |
Faculty of Science
Publications
publication
Structural studies of the yeast DNA damage-inducible protein Ddi1 reveal domain architecture of this eukaryotic protein family
2016 |
Faculty of Science, Faculty of Physical Education and Sport
publication
Discovery of the activators of NRF1 pathway affecting proteasome activity and preventing protein aggregation
2023 |
Faculty of Science, Central Library of Charles University
publication
Small molecules affecting proteasome activity and heat shock response for clearance of toxic protein species
2022 |
Faculty of Science, Faculty of Physical Education and Sport, Central Library of Charles University, First Faculty of Medicine, Faculty of Mathematics and Physics
publication
Lipid Nanoparticles for Broad-Spectrum Nucleic Acid Delivery
2021 |
Faculty of Science, Faculty of Physical Education and Sport, Central Library of Charles University, First Faculty of Medicine
publication
Nelfinavir Inhibits the TCF11/Nrf1-Mediated Proteasome Recovery Pathway in Multiple Myeloma
2020 |
Faculty of Science, Faculty of Physical Education and Sport, First Faculty of Medicine
publication
Capturing a dynamically interacting inhibitor by paramagnetic NMR spectroscopy
2019 |
Faculty of Science
publication
The yeast proteases Ddi1 and Wss1 are both involved in the DNA replication stress response
2019 |
Faculty of Science
publication
Quantitative proteomics reveals neuronal ubiquitination of Rngo/Ddi1 and several proteasomal subunits by Ube3a, accounting for the complexity of Angelman syndrome
2018 |
Faculty of Science, Faculty of Physical Education and Sport
publication
Human DNA-Damage-Inducible 2 Protein Is Structurally and Functionally Distinct from Its Yeast Ortholog
2016 |
Faculty of Science, Faculty of Physical Education and Sport, Central Library of Charles University
publication
Specific Inhibitors of HIV Capsid Assembly Binding to the C-Terminal Domain of the Capsid Protein: Evaluation of 2-Arylquinazolines as Potential Antiviral Compounds
2016 |
Faculty of Science
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