AbstractThe yeast silent information regulators Sir2, Sir3, and Sir4 physically interact with one another to establish a transcriptionally silent state by forming repressive chromatin structures. The Sir4 protein contains binding sites for both Sir2 and Sir3, and these protein-protein interactions are required for gene silencing. Here, we report the X-ray structure of the coiled-coil dimerization motif within the C-terminus of Sir4 and show that it forms a stable 1:1 complex with a dimeric fragment of Sir3 (residues 464–978). We have identified a cluster of residues on the surface of the Sir4 coiled coil required for specific interactions with Sir3. The histone deacetylase Sir2 can also bind to this complex, forming a ternary complex with t...
[[abstract]]In Saccharomyces cerevisiae, Sir proteins mediate heterochromatin epigenetic gene silenc...
Silent information regulator proteins Sir2, Sir3, and Sir4 form a heterotrimeric complex that repres...
Heterochromatin is a specialized chromatin structure that is central to eukaryotic transcriptional r...
AbstractThe yeast silent information regulators Sir2, Sir3, and Sir4 physically interact with one an...
AbstractThe C terminus of Sir4 forms a coiled-coil structure. The coiled-coil domain is responsible ...
Heterochromatin formation in the yeast Saccharomyces cerevisiae is characterized by the assembly of ...
The Silent Information Regulator (SIR) complex is responsible for the formation of silent chromatin ...
SummaryAssembly of silent chromatin domains in budding yeast involves the deacetylation of histone t...
Silent chromatin, or heterochromatin, refers to regions of the genome in which genes are constitutiv...
AbstractThe silent mating loci and chromosomal regions adjacent to telomeres of S. cerevisiae have f...
AbstractThe SIR2, SIR3, and SIR4 proteins are required for silencing of transcription at the silent ...
The C terminus of Sir4 forms a coiled-coil structure. The coiled-coil domain is responsible for the ...
AbstractIn budding yeast, the Sir2, Sir3 and Sir4 proteins form SIR complexes, required for the asse...
[[abstract]]In Saccharomyces cerevisiae, Sir proteins mediate heterochromatin epigenetic gene silenc...
[[abstract]]In Saccharomyces cerevisiae, Sir proteins mediate heterochromatin epigenetic gene silenc...
[[abstract]]In Saccharomyces cerevisiae, Sir proteins mediate heterochromatin epigenetic gene silenc...
Silent information regulator proteins Sir2, Sir3, and Sir4 form a heterotrimeric complex that repres...
Heterochromatin is a specialized chromatin structure that is central to eukaryotic transcriptional r...
AbstractThe yeast silent information regulators Sir2, Sir3, and Sir4 physically interact with one an...
AbstractThe C terminus of Sir4 forms a coiled-coil structure. The coiled-coil domain is responsible ...
Heterochromatin formation in the yeast Saccharomyces cerevisiae is characterized by the assembly of ...
The Silent Information Regulator (SIR) complex is responsible for the formation of silent chromatin ...
SummaryAssembly of silent chromatin domains in budding yeast involves the deacetylation of histone t...
Silent chromatin, or heterochromatin, refers to regions of the genome in which genes are constitutiv...
AbstractThe silent mating loci and chromosomal regions adjacent to telomeres of S. cerevisiae have f...
AbstractThe SIR2, SIR3, and SIR4 proteins are required for silencing of transcription at the silent ...
The C terminus of Sir4 forms a coiled-coil structure. The coiled-coil domain is responsible for the ...
AbstractIn budding yeast, the Sir2, Sir3 and Sir4 proteins form SIR complexes, required for the asse...
[[abstract]]In Saccharomyces cerevisiae, Sir proteins mediate heterochromatin epigenetic gene silenc...
[[abstract]]In Saccharomyces cerevisiae, Sir proteins mediate heterochromatin epigenetic gene silenc...
[[abstract]]In Saccharomyces cerevisiae, Sir proteins mediate heterochromatin epigenetic gene silenc...
Silent information regulator proteins Sir2, Sir3, and Sir4 form a heterotrimeric complex that repres...
Heterochromatin is a specialized chromatin structure that is central to eukaryotic transcriptional r...