Saccharomyces cerevisiae DNA repair processes: an update
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Abstract
References (102)
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Mismatch correction acts as a barrier to homeologous recombination in Saccharomyces cerevisiae.
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The RAD7 and RAD16 genes, which are essential for pyrimidine dimer removal from the silent mating type loci, are also required for repair of the nontranscribed strand of an active gene in Saccharomyces cerevisiae.
1994 • 200 citations
Yeast DNA repair and recombination proteins Rad1 and Rad1O constitute a single-stranded-DNA endonuclease
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Yeast excision repair gene RAD2 encodes a single-stranded DNA endonuclease
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RAD50 protein ofS.cerevisiaeexhibits ATP-dependent DNA binding
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Two Alternative Pathways of Double-Strand Break Repair That Are Kinetically Separable and Independently Modulated
1992 • 121 citations
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A Mutation in the Gene Encoding the Saccharomyces cerevisiae Single-Stranded DNA-Binding Protein Rfa1 Stimulates a RAD52-Independent Pathway for Direct-Repeat Recombination
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Homotypic and heterotypic protein associations control Rad51 function in double-strand break repair.
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Yeast DNA Repair Protein RAD23 Promotes Complex Formation between Transcription Factor TFIIH and DNA Damage Recognition Factor RAD14
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A Unique Pathway of Double-Strand Break Repair Operates in Tandemly Repeated Genes
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1990 • 70 citations
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Isolation and characterization of yeast DNA repair genes
1983 • 67 citations
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1995 • 59 citations
Removal of pyrimidine dimers from saccharomyces cerevisiae nuclear DNA under nongrowth conditions as detected by a sensitive, enzymatic assay
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Heteroduplex DNA Correction in Saccharomyces cerevisiae Is Mismatch Specific and Requires Functional PMS Genes
1989 • 56 citations
The RAD7 and RAD16 Genes, Which Are Essential for Pyrimidine Dimer Removal from the Silent Mating Type Loci, Are Also Required for Repair of the Nontranscribed Strand of an Active Gene in Saccharomyces cerevisiae
1994 • 56 citations
Purification and characterization of an endo-exonuclease from Saccharomyces cerevisiae that is influenced by the RAD52 gene.
1987 • 55 citations
Dual requirement in yeast DNA mismatch repair for MLH1 and PMS1, two homologs of the bacterial mutL gene
1994 • 54 citations
Interaction of the yeast RAD7 and SIR3 proteins: implications for DNA repair and chromatin structure.
1994 • 51 citations
Cellular Role of Yeast Apnl Apurinic Endonuclease/3′-Diesterase: Repair of Oxidative and Alkylation DNA Damage and Control of Spontaneous Mutation
1991 • 49 citations
Regulated expression of theSaccharomyces cerevisiaeDNA repair gene RAD7 in response to DNA damage and during sporulation
1990 • 43 citations
Two DNA Repair and Recombination Genes in Saccharomyces cerevisiae, RAD52 and RAD54, Are Induced during Meiosis
1989 • 38 citations
Negative superhelicity promotes ATP-dependent binding of yeast RAD3 protein to ultraviolet-damaged DNA.
1994 • 36 citations
Characterization of a DNA mismatch-binding activity in yeast extracts.
1993 • 34 citations
CCR4 Is a Glucose-Regulated Transcription Factor Whose Leucine-Rich Repeat Binds Several Proteins Important for Placing CCR4 in Its Proper Promoter Context
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Postreplication repair in Saccharomyces cerevisiae
1981 • 28 citations
Stable and Specific Association between the Yeast Recombination and DNA Repair Proteins RAD1 and RADIO In Vitro
1992 • 26 citations
Mutations in the Saccharomyces cerevisiae CDC1 gene affect double-strand-break-induced intrachromosomal recombination.
1994 • 20 citations
Differential Repair of UV Damage in rad Mutants of Saccharomyces cerevisiae: a Possible Function of G2 Arrest upon UV Irradiation
1990 • 17 citations
Mutations in the Saccharomyces cerevisiae CDC1 Gene Affect Double-Strand-Break-Induced Intrachromosomal Recombination
1994 • 8 citations
Recent Insights on DNA Repair: The Mechanism of Damaged Nucleotide Excision in Eukaryotes and Its Relationship to Other Cellular Processesa
1994 • 6 citations