ARS305 Literature Guide Help

ARS305 - Function/Process (16)

ReferenceOther Genes Addressed
Poli J, et al.  (2012) dNTP pools determine fork progression and origin usage under replication stress. EMBO J 31(4):883-94
Kubota T, et al.  (2011) Quantitative proteomic analysis of chromatin reveals that Ctf18 acts in the DNA replication checkpoint. Mol Cell Proteomics 10(7):M110.005561
Minca EC and Kowalski D  (2011) Replication fork stalling by bulky DNA damage: localization at active origins and checkpoint modulation. Nucleic Acids Res 39(7):2610-23
Minca EC and Kowalski D  (2010) Multiple Rad5 activities mediate sister chromatid recombination to bypass DNA damage at stalled replication forks. Mol Cell 38(5):649-61
Chang F, et al.  (2008) Analysis of chromosome III replicators reveals an unusual structure for the ARS318 silencer origin and a conserved WTW sequence within the origin recognition complex binding site. Mol Cell Biol 28(16):5071-81
Dershowitz A, et al.  (2007) Linear derivatives of Saccharomyces cerevisiae chromosome III can be maintained in the absence of autonomously replicating sequence elements. Mol Cell Biol 27(13):4652-63
Theis JF, et al.  (2007) Identification of Mutations That Decrease the Stability of a Fragment of Saccharomyces cerevisiae Chromosome III Lacking Efficient Replicators. Genetics 177(3):1445-58
Gibson DG, et al.  (2004) Diminished S-phase cyclin-dependent kinase function elicits vital Rad53-dependent checkpoint responses in Saccharomyces cerevisiae. Mol Cell Biol 24(23):10208-22
Pavlov YI, et al.  (2002) Yeast origins establish a strand bias for replicational mutagenesis. Mol Cell 10(1):207-13
Vogelauer M, et al.  (2002) Histone acetylation regulates the time of replication origin firing. Mol Cell 10(5):1223-33
Borde V, et al.  (2000) Direct coupling between meiotic DNA replication and recombination initiation. Science 290(5492):806-9
Theis JF, et al.  (1999) DNA sequence and functional analysis of homologous ARS elements of Saccharomyces cerevisiae and S. carlsbergensis. Genetics 152(3):943-52
Lin S and Kowalski D  (1997) Functional equivalency and diversity of cis-acting elements among yeast replication origins. Mol Cell Biol 17(9):5473-84
Chen S, et al.  (1996) Transcriptional terminators of RNA polymerase II are associated with yeast replication origins. Nucleic Acids Res 24(15):2885-93
Huang RY and Kowalski D  (1996) Multiple DNA elements in ARS305 determine replication origin activity in a yeast chromosome. Nucleic Acids Res 24(5):816-23
Huang RY and Kowalski D  (1993) A DNA unwinding element and an ARS consensus comprise a replication origin within a yeast chromosome. EMBO J 12(12):4521-31