Wolf-Dietrich Heyer
Affiliations: | Biochemistry and Molecular Biology | University of California, Davis, Davis, CA |
Area:
Biochemistry, Molecular Biology, GeneticsGoogle:
"Wolf-Dietrich Heyer"Children
Sign in to add traineeEdwin 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 |