Diploid-associated adaptation to chronic low-dose UV irradiation requires homologous recombination in <i>Saccharomyces cerevisiae</i>
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- 資料種別
- 記事
- 出版年月日等
- 2022-08-10
- 出版年(W3CDTF)
- 2022-08-10
- 寄与者
- D Bishop
- タイトル(掲載誌)
- Genetics
- 巻号年月日等(掲載誌)
- 222 1
- 掲載巻
- 222
- 掲載号
- 1
- 掲載年月日(W3CDTF)
- 2022-08-10
- 出版事項(掲載誌)
- Oxford University Press (OUP)
- 件名標目
- 対象利用者
- 一般
- 標準番号(その他)
- PMID : 35946552
- DOI
- 10.1093/genetics/iyac115
- 作成日(W3CDTF)
- 2022-08-10
- 著作権情報
- https://academic.oup.com/journals/pages/open_access/funder_policies/chorus/standard_publication_model
- 関連情報(URI)
- 参照
- Chronic low-dose ultraviolet-induced mutagenesis in nucleotide excision repair-deficient cellsDNA damage response – A double-edged sword in cancer prevention and cancer therapyReplication-dependent sister chromatid recombination in rad1 mutants of Saccharomyces cerevisiae.ATR: an essential regulator of genome integrityDNA repair: From molecular mechanism to human disease3 Xeroderma pigmentosum and related disorders: Defects in DNA repair and transcriptionExchanges between DNA strands in ultraviolet-irradiated Escherichia coliMitotic inter-homologue junctions accumulate at damaged DNA replication forks in recQ mutantsDNA Repair and Tumorigenesis: Lessons from Hereditary Cancer SyndromesUnderstanding the origins of UV-induced recombination through manipulation of sister chromatid cohesionGap-filling and bypass at the replication fork are both active mechanisms for tolerance of low-dose ultraviolet-induced DNA damage in the human genomePolyploidy can drive rapid adaptation in yeastNucleotide Excision Repair in EukaryotesSrs2 and Mus81–Mms4 Prevent Accumulation of Toxic Inter-Homolog Recombination IntermediatesAdditional modules for versatile and economical PCR-based gene deletion and modification in Saccharomyces cerevisiaeRAD6–RAD18–RAD5-pathway-dependent tolerance to chronic low-dose ultraviolet lightCancer in xeroderma pigmentosum and related disorders of DNA repairSaccharomyces cerevisiae MGS1 is essential in strains deficient in the RAD6-dependent DNA damage tolerance pathwayA Tetraploid Intermediate Precedes Aneuploid Formation in Yeasts Exposed to FluconazoleSpontaneous Changes in Ploidy Are Common in YeastYeast Nhp6A/B and Mammalian Hmgb1 Facilitate the Maintenance of Genome StabilityHigh-Resolution Genome-Wide Analysis of Irradiated (UV and γ-Rays) Diploid Yeast Cells Reveals a High Frequency of Genomic Loss of Heterozygosity (LOH) EventsNucleotide excision repair in humansRequirement of <i>RAD52</i> Group Genes for Postreplication Repair of UV-Damaged DNA in <i>Saccharomyces cerevisiae</i>Mitotic homologous recombination maintains genomic stability and suppresses tumorigenesisTolerating DNA damage during eukaryotic chromosome replicationMultiple Mechanisms Control Chromosome Integrity after Replication Fork Uncoupling and Restart at Irreparable UV LesionsAn Oncogene-Induced DNA Damage Model for Cancer DevelopmentChromosomal duplication is a transient evolutionary solution to stressGross chromosomal rearrangements in Saccharomyces cerevisiae replication and recombination defective mutantsPol32, a Subunit of <i>Saccharomyces cerevisiae</i> DNA Polymerase δ, Suppresses Genomic Deletions and Is Involved in the Mutagenic Bypass PathwayCloning-free genome alterations in saccharomyces cereuisiae using adaptamer-mediated PCRA dynamic model for replication protein A (RPA) function in DNA processing pathwaysFunctional and Physical Interaction of Yeast Mgs1 with PCNA: Impact on <i>RAD6</i> -Dependent DNA Damage ToleranceChoreography of the DNA Damage ResponseSrs2 Plays a Critical Role in Reversible G<sub>2</sub> Arrest upon Chronic and Low Doses of UV Irradiation via Two Distinct Homologous Recombination-Dependent Mechanisms in Postreplication Repair-Deficient CellsAdaptation to High Ethanol Reveals Complex Evolutionary PathwaysUV but not X rays stimulate homologous recombination between sister chromatids and homologs in a Saccharomyces cerevisiae mec1 (ATR) hypomorphic mutantThe DNA damage checkpoint response to replication stress: A Game of ForksTranslesion synthesis mechanisms depend on the nature of DNA damage in UV-irradiated human cellsUnderstanding nucleotide excision repair and its roles in cancer and ageingMolecular Mechanisms of Ultraviolet Radiation‐Induced DNA Damage and RepairRecombination between Homologous Chromosomes Induced by Unrepaired UV-Generated DNA Damage Requires Mus81p and Is Suppressed by Mms2pProcessing of DNA Polymerase-Blocking Lesions during Genome Replication Is Spatially and Temporally Segregated from Replication ForksDNA damage tolerance by recombination: Molecular pathways and DNA structuresPloidy changes and genome stability in yeastThe DNA Damage Response: Making It Safe to Play with KnivesMethods in yeast genetics
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