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Title
Nuclear organization in genome stability: SUMO connections
Authors
Keywords
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Journal
CELL RESEARCH
Volume 21, Issue 3, Pages 474-485
Publisher
Springer Nature
Online
2011-02-16
DOI
10.1038/cr.2011.31
References
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Related references
Note: Only part of the references are listed.- Arsenic-Induced SUMO-Dependent Recruitment of RNF4 into PML Nuclear Bodies
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- Yeast telomerase and the SUN domain protein Mps3 anchor telomeres and repress subtelomeric recombination
- (2009) H. Schober et al. GENES & DEVELOPMENT
- Mechanisms that regulate localization of a DNA double-strand break to the nuclear periphery
- (2009) P. Oza et al. GENES & DEVELOPMENT
- The functional importance of telomere clustering: Global changes in gene expression result from SIR factor dispersion
- (2009) A. Taddei et al. GENOME RESEARCH
- Chromosome-wide Rad51 Spreading and SUMO-H2A.Z-Dependent Chromosome Fixation in Response to a Persistent DNA Double-Strand Break
- (2009) Marian Kalocsay et al. MOLECULAR CELL
- The DNA damage response at eroded telomeres and tethering to the nuclear pore complex
- (2009) Basheer Khadaroo et al. NATURE CELL BIOLOGY
- A two-step model for senescence triggered by a single critically short telomere
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- Arsenic trioxide stimulates SUMO-2/3 modification leading to RNF4-dependent proteolytic targeting of PML
- (2008) Stefan R. Weisshaar et al. FEBS LETTERS
- A genetic locus targeted to the nuclear periphery in living cells maintains its transcriptional competence
- (2008) R. Ileng Kumaran et al. JOURNAL OF CELL BIOLOGY
- Regulation of Nuclear Positioning and Dynamics of the Silent Mating Type Loci by the Yeast Ku70/Ku80 Complex
- (2008) K. Bystricky et al. MOLECULAR AND CELLULAR BIOLOGY
- SUMOylation regulates Rad18-mediated template switch
- (2008) Dana Branzei et al. NATURE
- Role for perinuclear chromosome tethering in maintenance of genome stability
- (2008) Karim Mekhail et al. NATURE
- Domain organization of human chromosomes revealed by mapping of nuclear lamina interactions
- (2008) Lars Guelen et al. NATURE
- Transcriptional repression mediated by repositioning of genes to the nuclear lamina
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- RNF4 is a poly-SUMO-specific E3 ubiquitin ligase required for arsenic-induced PML degradation
- (2008) Michael H. Tatham et al. NATURE CELL BIOLOGY
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- A SIM-ultaneous role for SUMO and ubiquitin
- (2008) J. Jefferson P. Perry et al. TRENDS IN BIOCHEMICAL SCIENCES
- Recruitment to the Nuclear Periphery Can Alter Expression of Genes in Human Cells
- (2008) Lee E. Finlan et al. PLoS Genetics
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