标题
Cancer-associated p53 Tetramerization Domain Mutants
作者
关键词
-
出版物
JOURNAL OF BIOLOGICAL CHEMISTRY
Volume 286, Issue 1, Pages 252-258
出版商
American Society for Biochemistry & Molecular Biology (ASBMB)
发表日期
2010-10-27
DOI
10.1074/jbc.m110.174698
参考文献
相关参考文献
注意:仅列出部分参考文献,下载原文获取全部文献信息。- Influence of tetramerisation on site-specific post-translational modifications of p53: comparison of human and murine p53 tumour suppressor protein.
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- The Tumor Suppressor p53: From Structures to Drug Discovery
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- Ligand Binding and Hydration in Protein Misfolding: Insights from Studies of Prion and p53 Tumor Suppressor Proteins†
- (2009) Jerson L. Silva et al. ACCOUNTS OF CHEMICAL RESEARCH
- Evaluation of transcriptional activity of p53 in individual living mammalian cells
- (2009) Toshiaki Imagawa et al. ANALYTICAL BIOCHEMISTRY
- Modulation of the Oligomerization State of p53 by Differential Binding of Proteins of the S100 Family to p53 Monomers and Tetramers
- (2009) Jan van Dieck et al. JOURNAL OF BIOLOGICAL CHEMISTRY
- Posttranslational Modification of p53: Cooperative Integrators of Function
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- Tumor Suppressive Functions of p53
- (2009) J. T. Zilfou et al. Cold Spring Harbor Perspectives in Biology
- The (1–63) Region of the p53 Transactivation Domain Aggregates In Vitro into Cytotoxic Amyloid Assemblies
- (2008) Stefania Rigacci et al. BIOPHYSICAL JOURNAL
- Oxidation of methionine residue at hydrophobic core destabilizes p53 tetrameric structure
- (2008) Takao Nomura et al. BIOPOLYMERS
- p53 Oligomerization Is Essential for Its C-terminal Lysine Acetylation
- (2008) Yoko Itahana et al. JOURNAL OF BIOLOGICAL CHEMISTRY
- Oligomerization of BAK by p53 Utilizes Conserved Residues of the p53 DNA Binding Domain
- (2008) E. Christine Pietsch et al. JOURNAL OF BIOLOGICAL CHEMISTRY
- Molecular basis of Pirh2-mediated p53 ubiquitylation
- (2008) Yi Sheng et al. NATURE STRUCTURAL & MOLECULAR BIOLOGY
- 14-3-3 activation of DNA binding of p53 by enhancing its association into tetramers
- (2008) S. Rajagopalan et al. NUCLEIC ACIDS RESEARCH
- An Oncogene-Induced DNA Damage Model for Cancer Development
- (2008) T. D. Halazonetis et al. SCIENCE
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