SummaryYeast telomeres comprise irregular TG1-3 DNA repeats bound by the general transcription factor Rap1. Rif1 and Rif2, along with Rap1, form the telosome, a protective cap that inhibits telomerase, counteracts SIR-mediated transcriptional silencing, and prevents inadvertent recognition of telomeres as DNA double-strand breaks. We provide a molecular, biochemical, and functional dissection of the protein backbone at the core of the yeast telosome. The X-ray structures of Rif1 and Rif2 bound to the Rap1 C-terminal domain and that of the Rif1 C terminus are presented. Both Rif1 and Rif2 have separable and independent Rap1-binding epitopes, allowing Rap1 binding over large distances (42–110 Å). We identify tetramerization (Rif1) and polymer...
In Saccharomyces cerevisiae, RIF1 negatively regulates telomere length, but the mechanism of this re...
Telomere integrity is essential to maintain genome stability, and telomeric dysfunctions are associa...
Summary: The Saccharomyces cerevisiae telomere-binding protein Rif1 plays an evolutionarily conserve...
Yeast telomeres comprise irregular TG₁₋₃ DNA repeats bound by the general transcription factor Rap1....
SummaryYeast telomeres comprise irregular TG1-3 DNA repeats bound by the general transcription facto...
Rap1 is the main protein that binds double-stranded telomeric DNA in Saccharomyces cerevisiae. Exami...
The Saccharomyces cerevisiae Rap1 protein binds with high affinity to sites within the poly(C(1-3)A)...
Abstract Background Telomeres are nucleoprotein complexes at the end of linear eukaryotic chromosome...
Telomere length is negatively regulated by proteins of the telomeric DNA-protein complex. Rap1p in S...
International audienceThe non-homologous end joining repair pathway (NHEJ) is inhibited at telomeres...
Rap1 is the main protein that binds double-stranded telomeric DNA in Saccharomyces cerevisiae. Exami...
In budding yeast, Rif1 negatively regulates telomere length, but the mechanism of this regulation ha...
More than two decades of genetic research have identified and assigned main biological functions of ...
In yeast, Rif1 is part of the telosome, where it inhibits telomerase and checkpoint signaling at chr...
The Rif1 protein negatively regulates telomeric TG repeat length in the budding yeast Saccharomyces ...
In Saccharomyces cerevisiae, RIF1 negatively regulates telomere length, but the mechanism of this re...
Telomere integrity is essential to maintain genome stability, and telomeric dysfunctions are associa...
Summary: The Saccharomyces cerevisiae telomere-binding protein Rif1 plays an evolutionarily conserve...
Yeast telomeres comprise irregular TG₁₋₃ DNA repeats bound by the general transcription factor Rap1....
SummaryYeast telomeres comprise irregular TG1-3 DNA repeats bound by the general transcription facto...
Rap1 is the main protein that binds double-stranded telomeric DNA in Saccharomyces cerevisiae. Exami...
The Saccharomyces cerevisiae Rap1 protein binds with high affinity to sites within the poly(C(1-3)A)...
Abstract Background Telomeres are nucleoprotein complexes at the end of linear eukaryotic chromosome...
Telomere length is negatively regulated by proteins of the telomeric DNA-protein complex. Rap1p in S...
International audienceThe non-homologous end joining repair pathway (NHEJ) is inhibited at telomeres...
Rap1 is the main protein that binds double-stranded telomeric DNA in Saccharomyces cerevisiae. Exami...
In budding yeast, Rif1 negatively regulates telomere length, but the mechanism of this regulation ha...
More than two decades of genetic research have identified and assigned main biological functions of ...
In yeast, Rif1 is part of the telosome, where it inhibits telomerase and checkpoint signaling at chr...
The Rif1 protein negatively regulates telomeric TG repeat length in the budding yeast Saccharomyces ...
In Saccharomyces cerevisiae, RIF1 negatively regulates telomere length, but the mechanism of this re...
Telomere integrity is essential to maintain genome stability, and telomeric dysfunctions are associa...
Summary: The Saccharomyces cerevisiae telomere-binding protein Rif1 plays an evolutionarily conserve...