Chromatin immunoprecipitation with anti-acetyl histone H3 (K9 and K14) and anti-acetyl histone H4 (K5, K8, K12, and K16) antibodies shows that Lys-9 and/or Lys-14 of histone H3, but not the relevant sites of histone H4 in nucleosomes at the repressed MFA2 promoter, are hyperacetylated after UV irradiation. This level of histone hyperacetylation diminishes gradually as repair proceeds. Accompanying this, chromatin in the promoter becomes more accessible to restriction enzymes after UV irradiation and returns to the pre-UV state gradually. UV-related histone hyperacetylation and chromatin remodeling in the MFA2 promoter depend on Gcn5p and partially on Swi2p, respectively. Deletion of GCN5, but not of SWI2, impairs repair of DNA damage in the...
Eukaryotic genomic DNA is packaged into chromatin and all aspects of DNA metabolism require chromati...
Helix-distorting DNA lesions, including ultraviolet (UV) light-induced damage, are repaired by the g...
Repair of UV-induced damage in the cell is crucial to maintain genome integrity and stability. Acety...
Chromatin immunoprecipitation with anti-acetyl histone H3 (K9 and K14) and anti-acetyl histone H4 (K...
Global genome nucleotide excision repair removes DNA damage from transcriptionally silent regions of...
In yeast, global genome nucleotide-excision repair (GG-NER) requires a protein complex containing Ra...
In yeast, global genome nucleotide-excision repair (GG-NER) requires a protein complex containing Ra...
Very little is currently known about how nucleotide excision repair (NER) functions at the ends of c...
Repair of UV-induced damage in the cell is crucial to maintain genome integrity and stability. Acety...
Nucleotide excision repair (NER) is critical for main-taining genome integrity. How chromatin dynami...
How DNA repair enzymes or complexes gain access to chromatin is still not understood. Here, we have ...
Ultraviolet (UV) light poses a constant threat to the genomic integrity of most terrestrial organism...
Thesis (Ph.D.), School of Molecular Biosciences, Washington State UniversityThe histone proteins H3 ...
Eukaryotic genomic DNA is packaged into chromatin and all aspects of DNA metabolism require chromati...
Helix-distorting DNA lesions, including ultraviolet (UV) light-induced damage, are repaired by the g...
Repair of UV-induced damage in the cell is crucial to maintain genome integrity and stability. Acety...
Chromatin immunoprecipitation with anti-acetyl histone H3 (K9 and K14) and anti-acetyl histone H4 (K...
Global genome nucleotide excision repair removes DNA damage from transcriptionally silent regions of...
In yeast, global genome nucleotide-excision repair (GG-NER) requires a protein complex containing Ra...
In yeast, global genome nucleotide-excision repair (GG-NER) requires a protein complex containing Ra...
Very little is currently known about how nucleotide excision repair (NER) functions at the ends of c...
Repair of UV-induced damage in the cell is crucial to maintain genome integrity and stability. Acety...
Nucleotide excision repair (NER) is critical for main-taining genome integrity. How chromatin dynami...
How DNA repair enzymes or complexes gain access to chromatin is still not understood. Here, we have ...
Ultraviolet (UV) light poses a constant threat to the genomic integrity of most terrestrial organism...
Thesis (Ph.D.), School of Molecular Biosciences, Washington State UniversityThe histone proteins H3 ...
Eukaryotic genomic DNA is packaged into chromatin and all aspects of DNA metabolism require chromati...
Helix-distorting DNA lesions, including ultraviolet (UV) light-induced damage, are repaired by the g...
Repair of UV-induced damage in the cell is crucial to maintain genome integrity and stability. Acety...