RAD6/YGL058W Literature Guide Help

Other names published for RAD6: UBC2, PSO8, E2 ubiquitin-conjugating protein RAD6, YGL058W

RAD6 - Reviews (77)

ReferenceOther 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
Schreiber A and Peter M  (2013) Substrate recognition in selective autophagy and the ubiquitin-proteasome system. Biochim Biophys Acta ()
Tomson BN and Arndt KM  (2013) The many roles of the conserved eukaryotic Paf1 complex in regulating transcription, histone modifications, and disease states. Biochim Biophys Acta 1829(1):116-26
Enserink JM and Kolodner RD  (2012) What makes the engine hum: Rad6, a cell cycle supercharger. Cell Cycle 11(2):249-52
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
Rando OJ and Winston F  (2012) Chromatin and transcription in yeast. Genetics 190(2):351-87
Shilatifard A  (2012) The COMPASS Family of Histone H3K4 Methylases: Mechanisms of Regulation in Development and Disease Pathogenesis. Annu Rev Biochem 81():65-95
Varshavsky A  (2012) Three decades of studies to understand the functions of the ubiquitin family. Methods Mol Biol 832():1-11
Verghese J, et al.  (2012) Biology of the Heat Shock Response and Protein Chaperones: Budding Yeast (Saccharomyces cerevisiae) as a Model System. Microbiol Mol Biol Rev 76(2):115-58
Aiken CT, et al.  (2011) Oxidative stress-mediated regulation of proteasome complexes. Mol Cell Proteomics 10(5):R110.006924
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
McCullough SD and Grant PA  (2010) Histone Acetylation, Acetyltransferases, and Ataxia-Alteration of Histone Acetylation and Chromatin Dynamics is Implicated in the Pathogenesis of Polyglutamine-Expansion Disorders. Adv Protein Chem Struct Biol 79C():165-203
Shaheen M, et al.  (2010) The Role of PCNA Posttranslational Modifications in Translesion Synthesis.LID - 761217 [pii] J Nucleic Acids 2010()
Szekvolgyi L and Nicolas A  (2010) From meiosis to postmeiotic events: homologous recombination is obligatory but flexible. FEBS J 277(3):571-89
Takahashi YH and Shilatifard A  (2010) Structural basis for H3K4 trimethylation by yeast Set1/COMPASS. Adv Enzyme Regul 50(1):104-10
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
Fuchs SM, et al.  (2009) Protein modifications in transcription elongation. Biochim Biophys Acta 1789(1):26-36
Game JC and Chernikova SB  (2009) The role of RAD6 in recombinational repair, checkpoints and meiosis via histone modification. DNA Repair (Amst) 8(4):470-82
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
Ulrich HD  (2009) Regulating post-translational modifications of the eukaryotic replication clamp PCNA. DNA Repair (Amst) 8(4):461-9
Andersen PL, et al.  (2008) Eukaryotic DNA damage tolerance and translesion synthesis through covalent modifications of PCNA. Cell Res 18(1):162-73
Fingerman IM, et al.  (2008) Controlling histone methylation via trans-histone pathways. Epigenetics 3(5):237-42
Fu Y, et al.  (2008) DNA damage-induced gene expression in Saccharomyces cerevisiae. FEMS Microbiol Rev 32(6):908-26
Hishida T  (2008) [Molecular mechanisms of RAD6 DNA damage tolerance pathway in Saccharomyces cerevisiae] Seikagaku 80(2):124-8