Structure of Human SMYD2 Protein Reveals the Basis of p53 Tumor Suppressor Methylation
Published 2011 View Full Article
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Title
Structure of Human SMYD2 Protein Reveals the Basis of p53 Tumor Suppressor Methylation
Authors
Keywords
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Journal
JOURNAL OF BIOLOGICAL CHEMISTRY
Volume 286, Issue 44, Pages 38725-38737
Publisher
American Society for Biochemistry & Molecular Biology (ASBMB)
Online
2011-09-01
DOI
10.1074/jbc.m111.262410
References
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Related references
Note: Only part of the references are listed.- Structural Chemistry of the Histone Methyltransferases Cofactor Binding Site
- (2011) Valérie Campagna-Slater et al. Journal of Chemical Information and Modeling
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- Crystal Structures of Histone and p53 Methyltransferase SmyD2 Reveal a Conformational Flexibility of the Autoinhibitory C-Terminal Domain
- (2011) Yuanyuan Jiang et al. PLoS One
- Structural Basis of Substrate Methylation and Inhibition of SMYD2
- (2011) Andrew D. Ferguson et al. STRUCTURE
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- (2010) Paul A. Del Rizzo et al. JOURNAL OF BIOLOGICAL CHEMISTRY
- Crystal Structure of Cardiac-specific Histone Methyltransferase SmyD1 Reveals Unusual Active Site Architecture
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- Methylation of the Retinoblastoma Tumor Suppressor by SMYD2
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- The MBT Repeats of L3MBTL1 Link SET8-mediated p53 Methylation at Lysine 382 to Target Gene Repression
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- G9a and Glp Methylate Lysine 373 in the Tumor Suppressor p53
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- Structural Insights into the Autoinhibition and Posttranslational Activation of Histone Methyltransferase SmyD3
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- Cardiac Deletion of Smyd2 Is Dispensable for Mouse Heart Development
- (2010) Florian Diehl et al. PLoS One
- skNAC, a Smyd1-interacting transcription factor, is involved in cardiac development and skeletal muscle growth and regeneration
- (2010) C. Y. Park et al. PROCEEDINGS OF THE NATIONAL ACADEMY OF SCIENCES OF THE UNITED STATES OF AMERICA
- p53 post-translational modification: deregulated in tumorigenesis
- (2010) Chao Dai et al. TRENDS IN MOLECULAR MEDICINE
- Identification of Smyd4 as a Potential Tumor Suppressor Gene Involved in Breast Cancer Development
- (2009) L. Hu et al. CANCER RESEARCH
- Overexpression of SMYD2 relates to tumor cell proliferation and malignant outcome of esophageal squamous cell carcinoma
- (2009) Shuhei Komatsu et al. CARCINOGENESIS
- smyd1 and smyd2 are expressed in muscle tissue in Xenopus laevis
- (2008) Shinobu Kawamura et al. CYTOTECHNOLOGY
- A Drosophila Smyd4 Homologue Is a Muscle-Specific Transcriptional Modulator Involved in Development
- (2008) Elizabeth C. Thompson et al. PLoS One
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