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Conserved forkhead dimerization motif controls DNA replication timing and spatial organization of chromosomes in S. cerevisiae (ChIP-chip)
PubMed Full text in PMC Similar studies
Conserved forkhead dimerization motif controls DNA replication timing and spatial organization of chromosomes in S. cerevisiae
Conserved forkhead dimerization motif controls DNA replication timing and spatial organization of chromosomes in S. cerevisiae (HTS)
PubMed Full text in PMC Similar studies SRA Run Selector
Fkh1 and Fkh2 Bind Multiple Chromosomal Elements in the S. cerevisiae Genome with Distinct Specificities and Cell Cycle Dynamics
PubMed Full text in PMC Similar studies Analyze with GEO2R
Quantitative BrdU immunoprecipitation method demonstrates that Fkh1 and Fkh2 are rate-limiting activators of replication origins that reprogram replication timing in G1 phase
Quantitative BrdU immunoprecipitation method demonstrates that Fkh1 and Fkh2 are rate-limiting activators of replication origins that reprogram replication timing in G1 phase (ChIP)
Quantitative BrdU immunoprecipitation method demonstrates that Fkh1 and Fkh2 are rate-limiting activators of replication origins that reprogram replication timing in G1 phase (BrdU)
Forkhead transcription factors establish origin timing and long-range clustering in S. cerevisiae
Forkhead transcription factors establish origin timing and long-range clustering in S. cerevisiae [Array Data]
Forkhead transcription factors establish origin timing and long-range clustering in S. cerevisiae [Sequence Data]
Dbf4 recruitment by forkhead transcription factors defines an upstream rate-limiting step in determining replication origin firing
Rpd3 regulates single-copy origins independently of the rDNA array by opposing origin stimulation by Fkh1 [BrdU-IP-seq]
Dbf4 Zn-finger motif is specifically required for stimulation of Ctf19-activated origins in S. cerevisiae
Two yeast forkhead genes regulate the cell cycle and pseudohyphal growth
PubMed Similar studies Analyze with GEO2R
Rif1 Binding and Control of Chromosome-Internal DNA Replication Origins Is Limited by Telomere sequestration
PubMed Similar studies SRA Run Selector
Rif1 regulates initiation timing of late replication origins throughout the S. cerevisiae genome
Rif1 regulates initiation timing of late replication origins throughout the S. cerevisiae genome [ChIP-Seq]
Rif1 regulates initiation timing of late replication origins throughout the S. cerevisiae genome [array]
Regulation by the homologous Ace2 and Swi5 factors of Saccharomyces cerevisiae
Replication and Protein binding profile of chromosome VI of S.cerevisiae
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