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Results: 2
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ATF7IP-Mediated Stabilization of the Histone Methyltransferase SETDB1 Is Essential for Heterochromatin Formation by the HUSH Complex.
Richard T Timms
,
Iva A Tchasovnikarova
,
Robin Antrobus
,
Gordon Dougan
,
Paul J Lehner
Nov 08, 2016
ATF7IP
H3K9me3
HUSH complex
SETDB1
epigenetic silencing
Heterochromatin
histone methylation
ubiquitin-mediated degradation
Cell Nucleus
Enzyme Stability
Epigenesis
Genetic
Gene Deletion
Gene Silencing
HeLa Cells
Heterochromatin
Histone-Lysine N-Methyltransferase
Histones
Humans
Lysine
Methylation
Multiprotein Complexes
Proteasome Endopeptidase Complex
Protein Binding
Protein Methyltransferases
Proteolysis
Repressor Proteins
Transcription Factors
Transcriptome
Published by:
View Article
Position-effect variegation revisited
Richard T Timms
,
Iva A Tchasovnikarova
,
Paul J Lehner
Feb 02, 2016
HUSH complex
haploid genetic screen
Heterochromatin
POSITION-EFFECT VARIEGATION
retroviral silencing
Animals
Antigens
Neoplasm
Biological Evolution
Cell Line
Tumor
Chromosomal Position Effects
Drosophila melanogaster
Gene Silencing
Genetic Testing
HIV-1
Haploidy
Heterochromatin
Histones
Humans
Mice
Nuclear Proteins
Phosphoproteins
Virus Latency
Published by: