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Molecular Cell, ISSN 1097-2765, 01/2008, Volume 29, Issue 1, pp. 92 - 101
Transcriptional activators, several different coactivators, and general transcription factors are necessary to access specific loci in the dense chromatin... 
DNA | UBIQUITINATION | COMPLEX | ACTIVATION | UBP8 | CHROMATIN | BIOCHEMISTRY & MOLECULAR BIOLOGY | TRANSCRIPTION | UBIQUITYLATION | DEUBIQUITYLATION | MESSENGER-RNA EXPORT | SAGA | CELL BIOLOGY | Transcription Factors - chemistry | p300-CBP Transcription Factors - physiology | Histone Acetyltransferases - chemistry | Humans | Recombinant Fusion Proteins - physiology | Molecular Sequence Data | Trans-Activators - chemistry | Drosophila melanogaster - genetics | Promoter Regions, Genetic - genetics | Trans-Activators - physiology | Drosophila melanogaster - metabolism | Drosophila Proteins - physiology | Endopeptidases - chemistry | Conserved Sequence | Ubiquitination - physiology | p300-CBP Transcription Factors - chemistry | Amino Acid Sequence | Cell Line | Transcription Factors - physiology | Transcription Factors, General - chemistry | Animals, Genetically Modified | Gene Silencing | Thiolester Hydrolases - physiology | RNA Polymerase II - physiology | Drosophila Proteins - chemistry | Transcription Factors - genetics | Histone Acetyltransferases - physiology | Multiprotein Complexes - physiology | Protein Interaction Mapping | Sequence Homology, Amino Acid | Transcription Factors, General - physiology | Multiprotein Complexes - chemistry | Sequence Alignment | Animals | Endopeptidases - genetics | Heterochromatin - genetics | Receptors, Androgen - genetics | Drosophila Proteins - genetics | Thiolester Hydrolases - chemistry | Transcription, Genetic - genetics | Endopeptidases - physiology | Histones | p300-CBP Transcription Factors | Histone Acetyltransferases | Multiprotein Complexes | Receptors, Androgen | Recombinant Fusion Proteins | Life Sciences | Ubiquitination | Heterochromatin | Transcription, Genetic | Promoter Regions (Genetics) | Drosophila Proteins | Transcription Factors, General | Trans-Activators | Biochemistry, Molecular Biology | Thiolester Hydrolases | Transcription Factors | RNA Polymerase II | Drosophila melanogaster | Endopeptidases
Journal Article
Proceedings of the National Academy of Sciences of the United States of America, ISSN 0027-8424, 7/2006, Volume 103, Issue 28, pp. 10684 - 10689
It is thought that the H19 imprinting control region (ICR) directs the silencing of the maternally inherited Igf2 allele through a CTCF-dependent chromatin... 
Polymerase chain reaction | Intergenic DNA | Chromatin | Genetic inheritance | Liver | Alleles | Genetic loci | Methylation | Chromosomes | Binding sites | Insulators | Chromosome biology | Genomic imprinting | H19/IGF2 LOCUS | MULTIDISCIPLINARY SCIENCES | TRANSCRIPTION | BLOCKING ACTIVITY | genomic imprinting | 130 KB | ELEMENT | MESODERMAL ENHANCERS | chromosome biology | insulators | INSULATOR PROTEIN CTCF | GENE-EXPRESSION | SITES | METHYLATION-FREE DOMAINS | DNA-Binding Proteins - physiology | Protein Binding - genetics | RNA, Untranslated - metabolism | Gene Silencing | Male | Heterochromatin - chemistry | Insulin-Like Growth Factor II - metabolism | DNA-Binding Proteins - metabolism | Epigenesis, Genetic - physiology | Proteins - genetics | Repressor Proteins - physiology | Animals | Heterochromatin - genetics | Insulin-Like Growth Factor II - genetics | Enhancer Elements, Genetic | Heterochromatin - metabolism | CCCTC-Binding Factor | RNA, Long Noncoding | Female | Genomic Imprinting - physiology | Protein Conformation | Mice | RNA, Untranslated - physiology | Repressor Proteins - metabolism | Research | Biological Sciences | Protein Binding/genetics | Enhancer Elements (Genetics) | Heterochromatin/chemistry/genetics/metabolism | Insulin-Like Growth Factor II/genetics/metabolism | DNA-Binding Proteins/metabolism/physiology | Repressor Proteins/metabolism/physiology | Proteins/genetics | RNA; Untranslated/metabolism/physiology | Genomic Imprinting/physiology | Epigenesis; Genetic/physiology
Journal Article
Nature genetics, ISSN 1061-4036, 2008, Volume 40, Issue 4, pp. 411 - 420
In eukaryotes, Suv39h H3K9 trimethyltransferases are required for pericentric heterochromatin formation and function. In early mouse preimplantation embryos,... 
H3 LYSINE-9 METHYLATION | X-INACTIVATION | CLONED EMBRYOS | SATELLITE REPEATS | DNA METHYLATION | CHROMATIN | GENETICS & HEREDITY | GROUP PROTEINS | PERICENTRIC HETEROCHROMATIN | POLYCOMB | REPRESSIVE HISTONE METHYLATION | Genomic Imprinting | Transgenes - physiology | Male | Heterochromatin - physiology | Heterochromatin - ultrastructure | Embryo, Mammalian - metabolism | Mice - embryology | Repressor Proteins - physiology | Blastomeres - metabolism | Methyltransferases - physiology | Female | Integrases - metabolism | Transcription, Genetic | Embryo, Mammalian - ultrastructure | Proteins - physiology | DNA-Binding Proteins - physiology | Histone-Lysine N-Methyltransferase - genetics | Oocytes - metabolism | Mice, Inbred C57BL | Embryonic Development - physiology | Polycomb-Group Proteins | DNA-Binding Proteins - genetics | Reverse Transcriptase Polymerase Chain Reaction | Enhancer of Zeste Homolog 2 Protein | Mice, Knockout | Proteins - genetics | Ubiquitin-Protein Ligases | Polycomb Repressive Complex 2 | Animals | Polycomb Repressive Complex 1 | Fluorescent Antibody Technique | Apoptosis - physiology | Histone-Lysine N-Methyltransferase - physiology | Physiological aspects | Epigenetic inheritance | Embryo | Genetic aspects | Research | Embryonic stem cells | Genetics | Prenatal development | Chromatin | Embryos | Rodents
Journal Article
Nature Structural & Molecular Biology, ISSN 1545-9993, 07/2011, Volume 18, Issue 7, pp. 831 - 839
Journal Article
Molecular Biology of the Cell, ISSN 1059-1524, 07/2017, Volume 28, Issue 14, pp. 1984 - 1996
Journal Article
Journal Article
The Plant Cell, ISSN 1040-4651, 10/2011, Volume 23, Issue 10, pp. 3654 - 3670
Floral stem cells produce a defined number of floral organs before ceasing to be maintained as stem cells. Therefore, floral stem cells offer an ideal model to... 
Polymerase chain reaction | Meristems | Carpels | Inflorescences | Determinacy | Stem cells | Plants | Flowers | Repression | Plant cells | BIOCHEMISTRY & MOLECULAR BIOLOGY | COMPLEXES | HETEROCHROMATIN PROTEIN-1 | MADS DOMAIN | PLANT SCIENCES | CELL BIOLOGY | NONCODING RNA | FLOWER DEVELOPMENT | HOMEOTIC GENE-EXPRESSION | HISTONE H3 | SHOOT MERISTEM | MERISTEM ACTIVITY | H3 LYSINE 27 | Meristem - cytology | Arabidopsis - physiology | Arabidopsis - growth & development | Histones - chemistry | AGAMOUS Protein, Arabidopsis - genetics | Homeodomain Proteins - metabolism | Genetic Loci - genetics | Seedlings - genetics | Seedlings - growth & development | Arabidopsis Proteins - metabolism | In Situ Hybridization | Plants, Genetically Modified | AGAMOUS Protein, Arabidopsis - metabolism | Repressor Proteins - metabolism | Gene Expression Regulation, Developmental - physiology | Arabidopsis Proteins - genetics | Seedlings - cytology | Arabidopsis - cytology | Flowers - cytology | Repressor Proteins - genetics | Chromosome Mapping | Polycomb-Group Proteins | Flowers - growth & development | Homeodomain Proteins - genetics | Arabidopsis - genetics | Carrier Proteins - genetics | Phenotype | Carrier Proteins - metabolism | Mutagenesis | Seedlings - physiology | Models, Biological | Gene Expression Regulation, Plant - physiology | Stem Cells - physiology | Flowers - physiology | Mutation | Flowers - genetics | Arabidopsis thaliana | Proteins | Physiological aspects | Research | Plant physiology
Journal Article