
Publications of Anna Czarna
All genres
Journal Article (12)
1.
Journal Article
289 (22), pp. 15544 - 15553 (2014)
Staphylococcal SplB Serine Protease Utilizes a Novel Molecular Mechanism of Activation. JOURNAL OF BIOLOGICAL CHEMISTRY 2.
Journal Article
153 (6), pp. 1394 - 1405 (2013)
Structures of Drosophila Cryptochrome and Mouse Cryptochrome1 Provide Insight into Circadian Function. CELL 3.
Journal Article
286 (25), pp. 22414 - 22425 (2011)
Quantitative Analyses of Cryptochrome-mBMAL1 Interactions MECHANISTIC INSIGHTS INTO THE TRANSCRIPTIONAL REGULATION OF THE MAMMALIAN CIRCADIAN CLOCK. Journal of Biological Chemistry 4.
Journal Article
9 (6), pp. 1104 - 1111 (2010)
Structures of low molecular weight inhibitors bound to MDMX and MDM2 reveal new approaches for p53-MDMX/MDM2 antagonist drug discovery. Cell Cycle 5.
Journal Article
49 (31), pp. 5352 - 5356 (2010)
Robust Generation of Lead Compounds for Protein-Protein Interactions by Computational and MCR Chemistry: p53/Hdm2 Antagonists. Angewandte Chemie-International Edition 6.
Journal Article
11 (4), pp. 631 - 639 (2009)
Rapid and Efficient Hydrophilicity Tuning of p53/mdm2 Antagonists. Journal of Combinatorial Chemistry 7.
Journal Article
8 (8), pp. 1176 - 1184 (2009)
High affinity interaction of the p53 peptide-analogue with human Mdm2 and Mdmx. Cell Cycle 8.
Journal Article
51 (16), pp. 5035 - 5042 (2008)
NMR screening for lead compounds using tryptophan-mutated proteins. Journal of Medicinal Chemistry 9.
Journal Article
7 (15), pp. 2441 - 2443 (2008)
Structure of the human Mdmx protein bound to the p53 tumor suppressor transactivation domain. Cell Cycle 10.
Journal Article
3 (7), pp. 1118 - 1128 (2008)
Isoquinolin-1-one inhibitors of the MDM2-p53 interaction. ChemMedChem 11.
Journal Article
379 (2), pp. 343 - 356 (2008)
Enzymatic activity of the Staphylococcus aureus SpIB serine protease is induced by substrates containing the sequence Trp-Glu-Leu-Gin. Journal of Molecular Biology 12.
Journal Article
6 (19), pp. 2386 - 2392 (2007)
Molecular basis for the inhibition of p53 by Mdmx. Cell Cycle Thesis - PhD (1)
13.
Thesis - PhD
Molecular basis for the inhibition of p53 by Mdmx and Mdm2. Dissertation, Technische Universität, München (2009)