Structure of the E6/E6AP/p53 complex required for HPV-mediated degradation of p53
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Title
Structure of the E6/E6AP/p53 complex required for HPV-mediated degradation of p53
Authors
Keywords
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Journal
NATURE
Volume 529, Issue 7587, Pages 541-545
Publisher
Springer Nature
Online
2016-01-20
DOI
10.1038/nature16481
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Related references
Note: Only part of the references are listed.- Intracellular Analysis of the Interaction between the Human Papillomavirus Type 16 E6 Oncoprotein and Inhibitory Peptides
- (2015) Christina Stutz et al. PLoS One
- The E6AP Binding Pocket of the HPV16 E6 Oncoprotein Provides a Docking Site for a Small Inhibitory Peptide Unrelated to E6AP, Indicating Druggability of E6
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- The Active Form of E6-associated protein (E6AP)/UBE3A Ubiquitin Ligase Is an Oligomer
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- Structure Based Identification and Characterization of Flavonoids That Disrupt Human Papillomavirus-16 E6 Function
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- Structural Basis for Hijacking of Cellular LxxLL Motifs by Papillomavirus E6 Oncoproteins
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- Solution Structure Analysis of the HPV16 E6 Oncoprotein Reveals a Self-Association Mechanism Required for E6-Mediated Degradation of p53
- (2012) Katia Zanier et al. STRUCTURE
- p53 Degradation Activity, Expression, and Subcellular Localization of E6 Proteins from 29 Human Papillomavirus Genotypes
- (2011) T. Mesplede et al. JOURNAL OF VIROLOGY
- Benchmarking a luciferase complementation assay for detecting protein complexes
- (2011) Patricia Cassonnet et al. NATURE METHODS
- Proteasomal Degradation of p53 by Human Papillomavirus E6 Oncoprotein Relies on the Structural Integrity of p53 Core Domain
- (2011) Xavier Bernard et al. PLoS One
- PHENIX: a comprehensive Python-based system for macromolecular structure solution
- (2010) Paul D. Adams et al. ACTA CRYSTALLOGRAPHICA SECTION D-BIOLOGICAL CRYSTALLOGRAPHY
- Degradation of p53 by Human Alphapapillomavirus E6 Proteins Shows a Stronger Correlation with Phylogeny than Oncogenicity
- (2010) Leiping Fu et al. PLoS One
- How viruses hijack cell regulation
- (2010) Norman E. Davey et al. TRENDS IN BIOCHEMICAL SCIENCES
- MolProbity: all-atom structure validation for macromolecular crystallography
- (2009) Vincent B. Chen et al. ACTA CRYSTALLOGRAPHICA SECTION D-BIOLOGICAL CRYSTALLOGRAPHY
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