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Chromosome Synapsis Alleviates Mek1-Dependent Suppression of Meiotic DNA Repair.
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- PLoS Biology, 2016, v. 14, n. 2, p. 1, doi. 10.1371/journal.pbio.1002369
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- Article
Polyphenols from persimmon fruit attenuate acetaldehyde-induced DNA double-strand breaks by scavenging acetaldehyde.
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- Scientific Reports, 2022, v. 12, n. 1, p. 1, doi. 10.1038/s41598-022-14374-9
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- Article
In vivo assembly and disassembly of Rad51 and Rad52 complexes during double-strand break repair.
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- EMBO Journal, 2004, v. 23, n. 4, p. 939, doi. 10.1038/sj.emboj.7600091
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- Article
Genetic Interactions of Histone Modification Machinery Set1 and PAF1C with the Recombination Complex Rec114-Mer2-Mei4 in the Formation of Meiotic DNA Double-Strand Breaks.
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- International Journal of Molecular Sciences, 2020, v. 21, n. 8, p. 2679, doi. 10.3390/ijms21082679
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- Article
Meiosis-specific prophase-like pathway controls cleavage-independent release of cohesin by Wapl phosphorylation.
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- PLoS Genetics, 2019, v. 15, n. 01, p. 1, doi. 10.1371/journal.pgen.1007851
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- Article
Increase in creatinine levels associated with niraparib maintenance therapy in ovarian cancer.
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- Journal of Obstetrics & Gynaecology Research, 2024, v. 50, n. 3, p. 501, doi. 10.1111/jog.15865
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- Article
Remodeling of the Rad51 DNA Strand-Exchange Protein by the Srs2 Helicase.
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- Genetics, 2013, v. 194, n. 4, p. 859, doi. 10.1534/genetics.113.150615
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- Article
Forkhead-Associated Domain of Yeast Xrs2, a Homolog of Human Nbs1, Promotes Nonhomologous End Joining Through Interaction With a Ligase IV Partner Protein, Lif1.
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- Genetics, 2008, v. 179, n. 1, p. 213, doi. 10.1534/genetics.107.079236
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- Article
Isolation and Characterization of Novel xrs2 Mutations in Saccharomyces cerevisiae.
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- Genetics, 2005, v. 170, n. 1, p. 71, doi. 10.1534/genetics.104.037580
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- Article
The N-Terminal DNA-Binding Domain of Rad52 Promotes RAD51-Independent Recombination in Saccharomyces cerevisiae.
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- Genetics, 2003, v. 165, n. 4, p. 1703, doi. 10.1093/genetics/165.4.1703
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- Article
The Mitotic DNA Damage Checkpoint Proteins Rad17 and Rad24 Are Required for Repair of Double-Strand Breaks During Meiosis in Yeast.
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- Genetics, 2003, v. 164, n. 3, p. 855, doi. 10.1093/genetics/164.3.855
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- Article
Crossover Interference in Saccharomyces cerevisiae Requires a TID1/RDH54- and DMC1-Dependent Pathway.
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- Genetics, 2003, v. 163, n. 4, p. 1273, doi. 10.1093/genetics/163.4.1273
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- Article
Characterization of the roles of the Saccharomyces cerevisiae RAD54 gene and a homologue of RAD54...
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- Genetics, 1997, v. 147, n. 4, p. 1545, doi. 10.1093/genetics/147.4.1545
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- Article
Meiotic DNA double‐strand break‐independent role of protein phosphatase 4 in Hop1 assembly to promote meiotic chromosome axis formation in budding yeast.
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- Genes to Cells, 2023, v. 28, n. 8, p. 595, doi. 10.1111/gtc.13049
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- Article
Meiosis‐specific cohesin component, Rec8, promotes the localization of Mps3 SUN domain protein on the nuclear envelope.
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- Genes to Cells, 2019, v. 24, n. 1, p. 94, doi. 10.1111/gtc.12653
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- Article
Cyclin-dependent kinase-dependent phosphorylation of Lif1 and Sae2 controls imprecise nonhomologous end joining accompanied by double-strand break resection.
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- Genes to Cells, 2012, v. 17, n. 6, p. 473, doi. 10.1111/j.1365-2443.2012.01602.x
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- Article
Rad61/Wpl1 (Wapl), a cohesin regulator, controls chromosome compaction during meiosis.
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- Nucleic Acids Research, 2016, v. 44, n. 7, p. 3190, doi. 10.1093/nar/gkw034
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- Article
Origin of the apical transcytic membrane system in jejunal absorptive cells of neonates.
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- Medical Molecular Morphology, 2011, v. 44, n. 2, p. 71, doi. 10.1007/s00795-010-0506-3
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- Article
Crossover assurance and crossover interference are distinctly regulated by the ZMM proteins during yeast meiosis.
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- Nature Genetics, 2008, v. 40, n. 3, p. 299, doi. 10.1038/ng.83
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- Article
Dot1-Dependent Histone H3K79 Methylation Promotes the Formation of Meiotic Double-Strand Breaks in the Absence of Histone H3K4 Methylation in Budding Yeast.
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- PLoS ONE, 2014, v. 9, n. 5, p. 1, doi. 10.1371/journal.pone.0096648
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- Article
Multiple Pathways Suppress Non-Allelic Homologous Recombination during Meiosis in <i>Saccharomyces cerevisiae</i>.
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- PLoS ONE, 2013, v. 8, n. 4, p. 1, doi. 10.1371/journal.pone.0063144
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- Article
Phosphorylation of luminal region of the SUN-domain protein Mps3 promotes nuclear envelope localization during meiosis.
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- eLife, 2021, p. 1, doi. 10.7554/eLife.63119
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- Article
Mps3 SUN domain is important for chromosome motion and juxtaposition of homologous chromosomes during meiosis.
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- Genes to Cells, 2011, v. 16, n. 11, p. 1081, doi. 10.1111/j.1365-2443.2011.01554.x
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- Article
Cyclin-dependent kinase promotes formation of the synaptonemal complex in yeast meiosis.
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- Genes to Cells, 2010, v. 15, n. 10, p. 1036, doi. 10.1111/j.1365-2443.2010.01440.x
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- Article
High copy number suppression of the meiotic arrest caused by a dmc1 mutation:REC114 imposes an early recombination block andRAD54 promotes aDMC1-independent DSB repair pathway.
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- Genes to Cells, 1999, v. 4, n. 8, p. 425, doi. 10.1046/j.1365-2443.1999.00273.x
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- Article
Rad52 forms ring structures and co-operates with RPA in single-strand DNA annealing.
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- Genes to Cells, 1998, v. 3, n. 3, p. 145, doi. 10.1046/j.1365-2443.1998.00176.x
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- Article
SCF<sup>Cdc4</sup> ubiquitin ligase regulates synaptonemal complex formation during meiosis.
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- Life Science Alliance, 2021, v. 4, n. 2, p. 1, doi. 10.26508/lsa.202000933
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- Article
Enhanced homologous recombination by the modulation of targeting vector ends.
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- Scientific Reports, 2020, v. 10, n. 1, p. 1, doi. 10.1038/s41598-020-58893-9
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- Article
Budding Yeast SLX4 Contributes to the Appropriate Distribution of Crossovers and Meiotic Double-Strand Break Formation on Bivalents During Meiosis.
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- G3: Genes | Genomes | Genetics, 2016, v. 6, n. 7, p. 2033, doi. 10.1534/g3.116.029488
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- Article
The small GTPase Rab5 controls cell morphology, sexual development, ion‐stress response and vacuolar formation in fission yeast (802.29).
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- FASEB Journal, 2014, v. 28, p. N.PAG, doi. 10.1096/fasebj.28.1_supplement.802.29
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- Article
A new protein complex promoting the assembly of Rad51 filaments.
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- Nature Communications, 2013, v. 4, n. 4, p. 1676, doi. 10.1038/ncomms2678
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- Article
Transport Mechanisms for Soy Isoflavones and Microbial Metabolites Dihydrogenistein and Dihydrodaidzein Across Monolayers and Membranes.
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- Bioscience, Biotechnology & Biochemistry, 2013, v. 77, n. 11, p. 2210, doi. 10.1271/bbb.130404
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- Article
Meiotic prophase-like pathway for cleavage-independent removal of cohesin for chromosome morphogenesis.
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- Current Genetics, 2019, v. 65, n. 4, p. 817, doi. 10.1007/s00294-019-00959-x
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- Article
Regulation of Msh4-Msh5 association with meiotic chromosomes in budding yeast.
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- Genetics, 2021, v. 219, n. 2, p. 1, doi. 10.1093/genetics/iyab102
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- Article
Distinct Functions in Regulation of Meiotic Crossovers for DNA Damage Response Clamp Loader Rad24(Rad17) and Mec1(ATR) Kinase.
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- Genetics, 2019, v. 213, n. 4, p. 1255, doi. 10.1534/genetics.119.302427
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- Article
The Double-Strand Break Landscape of Meiotic Chromosomes Is Shaped by the Paf1 Transcription Elongation Complex in Saccharomyces cerevisiae.
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- Genetics, 2016, v. 202, n. 2, p. 497, doi. 10.1534/genetics.115.177287
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- Article
Human AAA+ ATPase FIGNL1 suppresses RAD51-mediated ultra-fine bridge formation.
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- Nucleic Acids Research, 2024, v. 52, n. 10, p. 5774, doi. 10.1093/nar/gkae263
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- Article
The synaptonemal complex central region modulates crossover pathways and feedback control of meiotic double-strand break formation.
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- Nucleic Acids Research, 2021, v. 49, n. 13, p. 7537, doi. 10.1093/nar/gkab566
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- Article
Canonical Non-Homologous End Joining in Mitosis Induces Genome Instability and Is Suppressed by M-phase-Specific Phosphorylation of XRCC4.
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- PLoS Genetics, 2014, v. 10, n. 8, p. 1, doi. 10.1371/journal.pgen.1004563
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- Article
Csm4-Dependent Telomere Movement on Nuclear Envelope Promotes Meiotic Recombination.
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- PLoS Genetics, 2008, v. 4, n. 9, p. 1, doi. 10.1371/journal.pgen.1000196
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- Article
Molecular Camouflage of Plasmodium falciparum Merozoites by Binding of Host Vitronectin to P47 Fragment of SERA5.
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- Scientific Reports, 2018, p. 1, doi. 10.1038/s41598-018-23194-9
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- Article
Double-strand break repair-adox: Restoration of suppressed double-strand break repair during mitosis induces genomic instability.
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- Cancer Science, 2014, v. 105, n. 12, p. 1519, doi. 10.1111/cas.12551
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- Article
The MRX Complex Ensures NHEJ Fidelity through Multiple Pathways Including Xrs2-FHA–Dependent Tel1 Activation.
- Published in:
- PLoS Genetics, 2016, v. 12, n. 3, p. 1, doi. 10.1371/journal.pgen.1005942
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- Article