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Research Article

RAD7 Gene of Saccharomyces cerevisiae: Transcripts, Nucleotide Sequence Analysis, and Functional Relationship between the RAD7 and RAD23 Gene Products

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Pages 1497-1507 | Received 11 Oct 1985, Accepted 12 Feb 1986, Published online: 31 Mar 2023

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Kerrington L. Ramsey, Joshua J. Smith, Arindam Dasgupta, Nazif Maqani, Patrick Grant & David T. Auble. (2004) The NEF4 Complex Regulates Rad4 Levels and Utilizes Snf2/Swi2-Related ATPase Activity for Nucleotide Excision Repair. Molecular and Cellular Biology 24:14, pages 6362-6378.
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Chikahide Masutani, Marito Araki, Kaoru Sugasawa, Peter J. van der Spek, Ayumi Yamada, Akio Uchida, Takafumi Maekawa, Dirk Bootsma, Jan H. J. Hoeijmakers & Fumio Hanaoka. (1997) Identification and Characterization of XPC-Binding Domain of hHR23B. Molecular and Cellular Biology 17:12, pages 6915-6923.
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Douglas H. Sweet, Yeun Kyu Jang & Gwendolyn B. Sancar. (1997) Role of UME6 in Transcriptional Regulation of a DNA Repair Gene in Saccharomyces cerevisiae. Molecular and Cellular Biology 17:11, pages 6223-6235.
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Zhigang Wang, Shuguang Wei, Simon H. Reed, Xiaohua Wu, Jesper Q. Svejstrup, William J. Feaver, Roger D. Kornberg & Errol C. Friedberg. (1997) The RAD7, RAD16, and RAD23 Genes of Saccharomyces cerevisiae: Requirement for Transcription-Independent Nucleotide Excision Repair In Vitro and Interactions between the Gene Products. Molecular and Cellular Biology 17:2, pages 635-643.
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Richard Verhage, Anne-Marie Zeeman, Nanda De Groot, Fiona Gleig, Dang Duong Bang, Pieter Van De Putte & Jaap Brouwer. (1994) 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. Molecular and Cellular Biology 14:9, pages 6135-6142.
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Carrol Terleth, Paul Schenk, Raymond Poot, Jaap Brouwer & Pieter Van De Putte. (1990) Differential Repair of UV Damage in rad Mutants of Saccharomyces cerevisiae: a Possible Function of G2 Arrest upon UV Irradiation. Molecular and Cellular Biology 10:9, pages 4678-4684.
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Joseph Sebastian, Betsy Kraus & Gwendolyn B. Sancar. (1990) Expression of the Yeast PHR1 Gene Is Induced by DNA-Damaging Agents. Molecular and Cellular Biology 10:9, pages 4630-4637.
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Robert H. Schiestl & Satya Prakash. (1990) RAD10, an Excision Repair Gene of Saccharomyces cerevisiae, Is Involved in the RAD1 Pathway of Mitotic Recombination. Molecular and Cellular Biology 10:6, pages 2485-2491.
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James Gailit. (1990) Identification of Proteins Whose Synthesis in Saccharomyces Cerevisiae is Induced by DNA Damage and Heat Shock. International Journal of Radiation Biology 57:5, pages 981-992.
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Maureen Neitz & John Carbon. (1987) Characterization of a Centromere-Linked Recombination Hot Spot in Saccharomyces cerevisiae. Molecular and Cellular Biology 7:11, pages 3871-3879.
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Reinhard Fleer, Charles M. Nicolet, Glenn A. Pure & Errol C. Friedberg. (1987) Gene of Saccharomyces cerevisiae: Molecular Cloning and Partial Characterization of a Gene That Is Inactivated in Escherichia coli. Molecular and Cellular Biology 7:3, pages 1180-1192.
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Paul Reynolds, Louise Prakash & Satya Prakash. (1987) Nucleotide Sequence and Functional Analysis of the RAD1 Gene of Saccharomyces cerevisiae. Molecular and Cellular Biology 7:3, pages 1012-1020.
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Kelly Barry, John I. Stiles, Dennis F. Pietras, Laurence Melnick & Fred Sherman. (1987) Physical Analysis of the COR Region: a Cluster of Six Genes in Saccharomyces cerevisiae. Molecular and Cellular Biology 7:2, pages 632-638.
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