Wolf-Dietrich Heyer

Affiliations: 
Biochemistry and Molecular Biology University of California, Davis, Davis, CA 
Area:
Biochemistry, Molecular Biology, Genetics
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"Wolf-Dietrich Heyer"

Parents

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Richard D. Kolodner post-doc (Chemistry Tree)

Children

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Edwin Haghnazari grad student 2004 UC Davis
Erin K. Schwartz grad student 2012 UC Davis
Shannon J. Ceballos grad student 2013 UC Davis
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Publications

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Xie B, Sanford EJ, Hung SH, et al. (2023) Multi-Step Control of Homologous Recombination by Mec1/ATR Ensures Robust Suppression of Gross Chromosomal Rearrangements. Biorxiv : the Preprint Server For Biology
Reitz D, Djeghmoum Y, Watson RA, et al. (2023) Delineation of two multi-invasion-induced rearrangement pathways that differently affect genome stability. Genes & Development
Cerqueira PG, Meyer D, Zhang L, et al. (2023) Saccharomyces cerevisiae DNA polymerase IV overcomes Rad51 inhibition of DNA polymerase δ in Rad52-mediated direct-repeat recombination. Nucleic Acids Research
Reitz D, Djeghmoum Y, Watson RA, et al. (2023) Delineation of two multi-invasion-induced rearrangement pathways that differently affect genome stability. Biorxiv : the Preprint Server For Biology
Reitz D, Savocco J, Piazza A, et al. (2022) Detection of Homologous Recombination Intermediates via Proximity Ligation and Quantitative PCR in Saccharomyces cerevisiae. Journal of Visualized Experiments : Jove
Llorens-Agost M, Ensminger M, Le HP, et al. (2021) Turning end-joining upside down in mitosis. Molecular & Cellular Oncology. 8: 2007029
Llorens-Agost M, Ensminger M, Le HP, et al. (2021) POLθ-mediated end joining is restricted by RAD52 and BRCA2 until the onset of mitosis. Nature Cell Biology. 23: 1095-1104
Jay A, Reitz D, Namekawa SH, et al. (2021) Cancer testis antigens and genomic instability: More than immunology. Dna Repair. 108: 103214
Le HP, Heyer WD, Liu J. (2021) Guardians of the Genome: BRCA2 and Its Partners. Genes. 12
Piazza A, Rajput P, Heyer WD. (2021) Physical and Genetic Assays for the Study of DNA Joint Molecules Metabolism and Multi-invasion-Induced Rearrangements in S. cerevisiae. Methods in Molecular Biology (Clifton, N.J.). 2153: 535-554
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