Forkhead transcription factors, Fkh1p and Fkh2p, collaborate with Mcm1p to control transcription required for M-phase.
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Fkh1 and Fkh2 bind multiple chromosomal elements in the S. cerevisiae genome with distinct specificities and cell cycle dynamicsAn overview of Cdk1-controlled targets and processesThe Forkhead transcription factor Hcm1 regulates chromosome segregation genes and fills the S-phase gap in the transcriptional circuitry of the cell cycleThe fork'ed path to mitosisDynamic modeling of cis-regulatory circuits and gene expression prediction via cross-gene identification.Identifying cooperative transcriptional regulations using protein-protein interactionsBinding of the Fkh1 Forkhead Associated Domain to a Phosphopeptide within the Mph1 DNA Helicase Regulates Mating-Type Switching in Budding Yeast.The Isw2 chromatin-remodeling ATPase cooperates with the Fkh2 transcription factor to repress transcription of the B-type cyclin gene CLB2Mdt1, a novel Rad53 FHA1 domain-interacting protein, modulates DNA damage tolerance and G(2)/M cell cycle progression in Saccharomyces cerevisiae.Forkhead proteins control the outcome of transcription factor binding by antiactivation.Complex transcriptional circuitry at the G1/S transition in Saccharomyces cerevisiae.Conserved homeodomain proteins interact with MADS box protein Mcm1 to restrict ECB-dependent transcription to the M/G1 phase of the cell cycleMechanisms controlling differential promoter-occupancy by the yeast forkhead proteins Fkh1p and Fkh2p: implications for regulating the cell cycle and differentiation.Mcm1 binds replication origins.Mcm1p-induced DNA bending regulates the formation of ternary transcription factor complexes.N-terminal arm of Mcm1 is required for transcription of a subset of genes involved in maintenance of the cell wall.Activation of the G2/M-specific gene CLB2 requires multiple cell cycle signals.Conversion of a replication origin to a silencer through a pathway shared by a Forkhead transcription factor and an S phase cyclin.Molecular determinants of the cell-cycle regulated Mcm1p-Fkh2p transcription factor complex.Regulation of cell cycle-specific gene expression through cyclin-dependent kinase-mediated phosphorylation of the forkhead transcription factor Fkh2pSaccharomyces forkhead protein Fkh1 regulates donor preference during mating-type switching through the recombination enhancer.A competitive transcription factor binding mechanism determines the timing of late cell cycle-dependent gene expression.Forkhead transcription factors establish origin timing and long-range clustering in S. cerevisiaePolo kinase controls cell-cycle-dependent transcription by targeting a coactivator protein.Interactions of the Mcm1 MADS box protein with cofactors that regulate mating in yeast.Central role of Ifh1p-Fhl1p interaction in the synthesis of yeast ribosomal proteinsFoxM1 is required for execution of the mitotic programme and chromosome stabilityBck2 acts through the MADS box protein Mcm1 to activate cell-cycle-regulated genes in budding yeastCell cycle-dependent regulation of the forkhead transcription factor FOXK2 by CDK·cyclin complexes.Assessing clusters and motifs from gene expression data.Identifying cooperative transcription factors in yeast using multiple data sourcesUncovering transcriptional interactions via an adaptive fuzzy logic approachInferring transcriptional modules from ChIP-chip, motif and microarray data.Inference of gene regulation functions from dynamic transcriptome data.Computational reconstruction of transcriptional regulatory modules of the yeast cell cycle.A systematic approach to detecting transcription factors in response to environmental stresses.Systematic identification of yeast cell cycle transcription factors using multiple data sources.Reconstruct gene regulatory network using slice pattern modelPredicting eukaryotic transcriptional cooperativity by Bayesian network integration of genome-wide dataA Clb/Cdk1-mediated regulation of Fkh2 synchronizes CLB expression in the budding yeast cell cycle.
P2860
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P2860
Forkhead transcription factors, Fkh1p and Fkh2p, collaborate with Mcm1p to control transcription required for M-phase.
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Forkhead transcription factors ...... cription required for M-phase.
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Forkhead transcription factors ...... cription required for M-phase.
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Forkhead transcription factors ...... cription required for M-phase.
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Forkhead transcription factors ...... cription required for M-phase.
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Forkhead transcription factors ...... cription required for M-phase.
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Forkhead transcription factors ...... cription required for M-phase.
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Forkhead transcription factors ...... scription required for M-phase
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Forkhead transcription factors ...... cription required for M-phase.
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Forkhead transcription factors ...... cription required for M-phase.
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Forkhead transcription factors ...... cription required for M-phase.
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P2093
P3181
P1433
P1476
Forkhead transcription factors ...... cription required for M-phase.
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P2093
A Shevchenko
D M Reynolds
S D Goldstone
P304
P3181
P356
10.1016/S0960-9822(00)00618-7