Other names published for RAD5: REV2, SNM2, DNA helicase RAD5, YLR032W
RAD5 LITERATURE TOPICS
- Curated Literature
- Genetics/Cell Biology
- Nucleic Acid Information
- Gene Product Information
- Related Genes/Proteins
- Research Aids
- Genome-wide Analysis
- Proteome-wide Analysis
- Other Topics
- Additional Information
RAD5 - Reviews (35)
| Reference | Other Genes Addressed |
|---|---|
| Boiteux S and Jinks-Robertson S (2013) DNA Repair Mechanisms and the Bypass of DNA Damage in Saccharomyces cerevisiae. Genetics 193(4):1025-64 | |
| Hoch NC, et al. (2013) Genomic stability disorders: from budding yeast to humans. Front Biosci (Schol Ed) 5():396-411 | |
| Finley D, et al. (2012) The Ubiquitin-Proteasome System of Saccharomyces cerevisiae. Genetics 192(2):319-60 | |
| Gazy I and Kupiec M (2012) The importance of being modified: PCNA modification and DNA damage response. Cell Cycle 11(14):2620-3 | |
| Carr AM, et al. (2011) DNA replication: failures and inverted fusions. Semin Cell Dev Biol 22(8):866-74 | |
| Flaus A and Owen-Hughes T (2011) Mechanisms for ATP-dependent chromatin remodelling: the means to the end. FEBS J 278(19):3579-95 | |
| Lehmann AR (2011) Ubiquitin-family modifications in the replication of DNA damage. FEBS Lett 585(18):2772-9 | |
| Nijwening JH, et al. (2011) Screening for modulators of cisplatin sensitivity: unbiased screens reveal common themes. Cell Cycle 10(3):380-6 | |
| Zhang W, et al. (2011) Roles of sequential ubiquitination of PCNA in DNA-damage tolerance. FEBS Lett 585(18):2786-94 | |
| Liu F and Walters KJ (2010) Multitasking with ubiquitin through multivalent interactions. Trends Biochem Sci 35(6):352-60 | |
| Shaheen M, et al. (2010) The Role of PCNA Posttranslational Modifications in Translesion Synthesis.LID - 761217 [pii] J Nucleic Acids 2010() | |
| Ting L, et al. (2010) RAD18 lives a double life: Its implication in DNA double-strand break repair. DNA Repair (Amst) 9(12):1241-8 | |
| Unk I, et al. (2010) Role of yeast Rad5 and its human orthologs, HLTF and SHPRH in DNA damage tolerance. DNA Repair (Amst) 9(3):257-267 | |
| Schleker T, et al. (2009) Posttranslational modifications of repair factors and histones in the cellular response to stalled replication forks. DNA Repair (Amst) 8(9):1089-100 | |
| Andersen PL, et al. (2008) Eukaryotic DNA damage tolerance and translesion synthesis through covalent modifications of PCNA. Cell Res 18(1):162-73 | |
| Lee KY and Myung K (2008) PCNA Modifications for Regulation of Post-Replication Repair Pathways. Mol Cells 26(1):5-11 | |
| Myung K and Smith S (2008) The RAD5-dependent postreplication repair pathway is important to suppress gross chromosomal rearrangements. J Natl Cancer Inst Monogr (39):12-5 | |
| Banerjee S, et al. (2007) Suppression of gross chromosomal rearrangements by a new alternative replication factor C complex. Biochem Biophys Res Commun 362(3):546-9 | |
| Branzei D and Foiani M (2007) Interplay of replication checkpoints and repair proteins at stalled replication forks. DNA Repair (Amst) 6(7):994-1003 | |
| Klein HL (2007) Reversal of fortune: rad5 to the rescue. Mol Cell 28(2):181-3 | |
| Lawrence CW (2007) Following the RAD6 pathway. DNA Repair (Amst) 6(5):676-86 | |
| Ulrich HD (2007) Conservation of DNA damage tolerance pathways from yeast to humans. Biochem Soc Trans 35(Pt 5):1334-7 | |
| Branzei D and Foiani M (2006) The Rad53 signal transduction pathway: Replication fork stabilization, DNA repair, and adaptation. Exp Cell Res 312(14):2654-9 | |
| Cederberg H and Rannug U (2006) Mechanisms of human minisatellite mutation in yeast. Mutat Res 598(1-2):132-43 | |
| Durr H, et al. (2006) Snf2 family ATPases and DExx box helicases: differences and unifying concepts from high-resolution crystal structures. Nucleic Acids Res 34(15):4160-7 | |
| Lee KM and O'Connell MJ (2006) A new SUMO ligase in the DNA damage response. DNA Repair (Amst) 5(1):138-41 | |
| Kannouche PL and Lehmann AR (2004) Ubiquitination of PCNA and the polymerase switch in human cells. Cell Cycle 3(8):1011-3 | |
| Smirnova M and Klein HL (2003) Role of the error-free damage bypass postreplication repair pathway in the maintenance of genomic stability. Mutat Res 532(1-2):117-35 | |
| Dronkert ML and Kanaar R (2001) Repair of DNA interstrand cross-links. Mutat Res 486(4):217-47 | |
| Kunz BA, et al. (2000) DNA damage-induced mutation: tolerance via translesion synthesis. Mutat Res 451(1-2):169-85 |



