Replication-coupled chromatin assembly is achieved by a network of alternate pathways containing different chromatin assembly factors and histone-modifying enzymes that coordinate deposition of nucleosomes at the replication fork. Here we describe the organization of a CAF-1-dependent pathway in Saccharomyces cerevisiae that regulates acetylation of histone H4 K16. We demonstrate factors that function in this CAF-1-dependent pathway are important for preventing establishment of silenced states at inappropriate genomic sites using a crippled HMR locus as a model, while factors specific to other assembly pathways do not. This CAF-1-dependent pathway required the cullin Rtt101p, but was functionally distinct from an alternate pathway involving...
Following acetylation, newly synthesized H3-H4 is directly transferred from the histone chaperone an...
Eukaryotic chromatin is a highly dynamic structure with essential roles in virtually all DNA-depende...
<div><p>At blocked replication forks, homologous recombination mediates the nascent strands to switc...
The genetic information of a cell is organized in a DNA and protein structure referred to as chromat...
The genetic information of a cell is organized in a DNA and protein structure referred to as chromat...
International audienceChromatin assembly and the establishment of sister chromatid cohesion are inti...
The eukaryotic genome forms a chromatin structure that con-tains repeating nucleosome structures. Nu...
How the very first step in nucleosome assembly, deposition of histone H3-H4 as tetramers or dimers o...
Replication stress poses a serious threat to genome stability. Recombination-Dependent-Replication (...
CAF-1 and HIR are highly conserved histone chaperone protein complexes that function in the assembly...
Eukaryotic chromatin is a highly dynamic structure with essential roles in virtually all DNA-depende...
International audienceReplication stress poses a serious threat to genome stability. Recombination-D...
At blocked replication forks, homologous recombination mediates the nascent strands to switch templa...
De novo chromatin assembly maintains histone density on the daughter strands in the wake of the repl...
Following acetylation, newly synthesized H3-H4 is directly transferred from the histone chaperone an...
Eukaryotic chromatin is a highly dynamic structure with essential roles in virtually all DNA-depende...
<div><p>At blocked replication forks, homologous recombination mediates the nascent strands to switc...
The genetic information of a cell is organized in a DNA and protein structure referred to as chromat...
The genetic information of a cell is organized in a DNA and protein structure referred to as chromat...
International audienceChromatin assembly and the establishment of sister chromatid cohesion are inti...
The eukaryotic genome forms a chromatin structure that con-tains repeating nucleosome structures. Nu...
How the very first step in nucleosome assembly, deposition of histone H3-H4 as tetramers or dimers o...
Replication stress poses a serious threat to genome stability. Recombination-Dependent-Replication (...
CAF-1 and HIR are highly conserved histone chaperone protein complexes that function in the assembly...
Eukaryotic chromatin is a highly dynamic structure with essential roles in virtually all DNA-depende...
International audienceReplication stress poses a serious threat to genome stability. Recombination-D...
At blocked replication forks, homologous recombination mediates the nascent strands to switch templa...
De novo chromatin assembly maintains histone density on the daughter strands in the wake of the repl...
Following acetylation, newly synthesized H3-H4 is directly transferred from the histone chaperone an...
Eukaryotic chromatin is a highly dynamic structure with essential roles in virtually all DNA-depende...
<div><p>At blocked replication forks, homologous recombination mediates the nascent strands to switc...