RAD30/YDR419W Literature Guide Help

Other names published for RAD30: DBH1, YDR419W

RAD30 - Additional Literature (80)

ReferenceOther Genes Addressed
Kozmin SG and Jinks-Robertson S  (2013) The Mechanism of Nucleotide Excision Repair-Mediated UV-Induced Mutagenesis in Nonproliferating Cells. Genetics 193(3):803-17
Andersen N, et al.  (2012) In-vitro replication studies on O(2)-methylthymidine and O(4)-methylthymidine. Chem Res Toxicol 25(11):2523-31
Grogan D and Jinks-Robertson S  (2012) Formaldehyde-induced mutagenesis in Saccharomyces cerevisiae: molecular properties and the roles of repair and bypass systems. Mutat Res 731(1-2):92-8
Lazzaro F, et al.  (2012) RNase H and postreplication repair protect cells from ribonucleotides incorporated in DNA. Mol Cell 45(1):99-110
Saugar I, et al.  (2012) The genome maintenance factor Mgs1 is targeted to sites of replication stress by ubiquitylated PCNA. Nucleic Acids Res 40(1):245-57
Stone JE, et al.  (2012) DNA polymerase zeta generates clustered mutations during bypass of endogenous DNA lesions in Saccharomyces cerevisiae. Environ Mol Mutagen 53(9):777-86
Swanson AL, et al.  (2012) Accurate and efficient bypass of 8,5'-cyclopurine-2'-deoxynucleosides by human and yeast DNA polymerase ?. Chem Res Toxicol 25(8):1682-91
Burch LH, et al.  (2011) Damage-induced localized hypermutability. Cell Cycle 10(7):1073-85
Cocklin R, et al.  (2011) New insight into the role of the Cdc34 ubiquitin-conjugating enzyme in cell cycle regulation via Ace2 and Sic1. Genetics 187(3):701-15
Ede C, et al.  (2011) Budding yeast Mph1 promotes sister chromatid interactions by a mechanism involving strand invasion. DNA Repair (Amst) 10(1):45-55
Kim N, et al.  (2011) The dCMP transferase activity of yeast Rev1 is biologically relevant during the bypass of endogenously generated AP sites. DNA Repair (Amst) 10(12):1262-71
Monti P, et al.  (2011) 3-Methyl-3-deazaadenine, a stable isostere of N3-methyl-adenine, is efficiently bypassed by replication in vivo and by transcription in vitro. DNA Repair (Amst) 10(8):861-8
Swanson AL, et al.  (2011) In vitro replication studies of carboxymethylated DNA lesions with Saccharomyces cerevisiae polymerase ?. Biochemistry 50(35):7666-73
Wiltrout ME and Walker GC  (2011) The DNA Polymerase Activity of Saccharomyces cerevisiae Rev1 is Biologically Significant. Genetics 187(1):21-35
Crabbe L, et al.  (2010) Analysis of replication profiles reveals key role of RFC-Ctf18 in yeast replication stress response. Nat Struct Mol Biol 17(11):1391-1397
Daigaku Y, et al.  (2010) Ubiquitin-dependent DNA damage bypass is separable from genome replication. Nature 465(7300):951-5
Hicks WM, et al.  (2010) Increased Mutagenesis and Unique Mutation Signature Associated with Mitotic Gene Conversion. Science 329(5987):82-85
Karras GI and Jentsch S  (2010) The RAD6 DNA damage tolerance pathway operates uncoupled from the replication fork and is functional beyond S phase. Cell 141(2):255-67
Putnam CD, et al.  (2010) Post-replication repair suppresses duplication-mediated genome instability. PLoS Genet 6():e1000933
Schorr S and Carell T  (2010) Mechanism of acetylaminofluorene-dG induced frameshifting by polymerase eta. Chembiochem 11(18):2534-7
Vanoli F, et al.  (2010) Replication and recombination factors contributing to recombination-dependent bypass of DNA lesions by template switch. PLoS Genet 6(11):e1001205
Acharya N, et al.  (2009) Yeast Rev1 protein promotes complex formation of DNA polymerase zeta with Pol32 subunit of DNA polymerase delta. Proc Natl Acad Sci U S A 106(24):9631-6
Bao G and Kow YW  (2009) Effect of sequence context and direction of replication on AP site bypass in Saccharomyces cerevisiae. Mutat Res 669(1-2):147-54
Hishida T, et al.  (2009) RAD6-RAD18-RAD5-pathway-dependent tolerance to chronic low-dose ultraviolet light. Nature 457(7229):612-5
Pages V, et al.  (2009) Role of DNA damage-induced replication checkpoint in promoting lesion bypass by translesion synthesis in yeast. Genes Dev 23(12):1438-49
Smith CE, et al.  (2009) Aberrant double-strand break repair resulting in half crossovers in mutants defective for Rad51 or the DNA polymerase delta complex. Mol Cell Biol 29(6):1432-41
Suzuki M, et al.  (2009) PCNA mono-ubiquitination and activation of translesion DNA polymerases by DNA polymerase {alpha}. J Biochem 146(1):13-21
Vooradi V and Romano LJ  (2009) Effect of N-2-acetylaminofluorene and 2-aminofluorene adducts on DNA binding and synthesis by yeast DNA polymerase eta. Biochemistry 48(19):4209-16
Abdulovic AL, et al.  (2008) The effect of sequence context on spontaneous Pol{zeta}-dependent mutagenesis in Saccharomyces cerevisiae. Nucleic Acids Res 36(6):2082-93
Acharya N, et al.  (2008) Roles of PCNA-binding and ubiquitin-binding domains in human DNA polymerase {eta} in translesion DNA synthesis. Proc Natl Acad Sci U S A 105(46):17724-17729