HO/YDL227C Literature Guide Help

Other names published for HO: YDL227C

HO - Additional Literature (258)

ReferenceOther Genes Addressed
Blewett NH and Goldstrohm AC  (2012) A eukaryotic translation initiation factor 4E-binding protein promotes mRNA decapping and is required for PUF repression. Mol Cell Biol 32(20):4181-94
Liang D, et al.  (2012) Histone dosage regulates DNA damage sensitivity in a checkpoint-independent manner by the homologous recombination pathway. Nucleic Acids Res 40(19):9604-20
Sugawara N and Haber JE  (2012) Monitoring DNA Recombination Initiated by HO Endonuclease. Methods Mol Biol 920():349-70
Akao T, et al.  (2011) Whole-genome sequencing of sake yeast Saccharomyces cerevisiae Kyokai no. 7. DNA Res 18(6):423-34
Carreto L, et al.  (2011) Expression variability of co-regulated genes differentiates Saccharomyces cerevisiae strains. BMC Genomics 12(1):201
Carroll KM, et al.  (2011) Absolute quantification of the glycolytic pathway in yeast: deployment of a complete QconCAT approach. Mol Cell Proteomics 10(12):M111.007633
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
Coic E, et al.  (2011) Dynamics of homology searching during gene conversion in Saccharomyces cerevisiae revealed by donor competition. Genetics 189(4):1225-33
Feng W, et al.  (2011) Replication stress-induced chromosome breakage is correlated with replication fork progression and is preceded by single-stranded DNA formation. G3 (Bethesda) 1(5):327-35
Furukawa K, et al.  (2011) Efficient Construction of Homozygous Diploid Strains Identifies Genes Required for the Hyper-Filamentous Phenotype in Saccharomyces cerevisiae. PLoS One 6(10):e26584
Gomez-Gonzalez B, et al.  (2011) Genetic and Molecular Analysis of Mitotic Recombination in Saccharomyces cerevisiae. Methods Mol Biol 745():151-72
Hicks WM, et al.  (2011) Real-time analysis of double-strand DNA break repair by homologous recombination. Proc Natl Acad Sci U S A 108(8):3108-15
Leduc F, et al.  (2011) Genome-wide mapping of DNA strand breaks. PLoS One 6(2):e17353
Sitaraman R  (2011) The treasure of the humble: Lessons from Baker's yeast. Biochem Mol Biol Educ 39(4):261-6
Takahata S, et al.  (2011) Repressive chromatin affects factor binding at yeast HO (homothallic switching) promoter. J Biol Chem 286(40):34809-19
Tu WY, et al.  (2011) Rpl12p affects the transcription of the PHO pathway high-affinity inorganic phosphate transporters and repressible phosphatases. Yeast 28(6):481-93
Venters BJ, et al.  (2011) A comprehensive genomic binding map of gene and chromatin regulatory proteins in Saccharomyces. Mol Cell 41(4):480-92
Akai Y, et al.  (2010) Structure of the histone chaperone CIA/ASF1-double bromodomain complex linking histone modifications and site-specific histone eviction. Proc Natl Acad Sci U S A 107(18):8153-8
Bazzi M, et al.  (2010) Dephosphorylation of {gamma}H2A by Glc7/Protein Phosphatase 1 Promotes Recovery from Inhibition of DNA Replication. Mol Cell Biol 30(1):131-45
Heuck A, et al.  (2010) The structure of the Myo4p globular tail and its function in ASH1 mRNA localization. J Cell Biol 189(3):497-510
Hou L, et al.  (2010) A novel approach for the improvement of ethanol fermentation by Saccharomyces cerevisiae. Can J Microbiol 56(6):495-500
Janke R, et al.  (2010) A truncated DNA-damage-signaling response is activated after DSB formation in the G1 phase of Saccharomyces cerevisiae. Nucleic Acids Res 38(7):2302-13
Lynch PJ and Rusche LN  (2010) An auxiliary silencer and a boundary element maintain high levels of silencing proteins at HMR in Saccharomyces cerevisiae. Genetics 185(1):113-27
Pan X, et al.  (2010) Trivalent arsenic inhibits the functions of chaperonin complex. Genetics 186(2):725-34
Shim EY, et al.  (2010) Saccharomyces cerevisiae Mre11/Rad50/Xrs2 and Ku proteins regulate association of Exo1 and Dna2 with DNA breaks. EMBO J 29(19):3370-80
Wu CY, et al.  (2010) Control of transcription by cell size. PLoS Biol 8(11):e1000523
Cantone I, et al.  (2009) A yeast synthetic network for in vivo assessment of reverse-engineering and modeling approaches. Cell 137(1):172-81
Chen AK, et al.  (2009) Response of Saccharomyces cerevisiae to stress-free acidification. J Microbiol 47(1):1-8
Cook CE, et al.  (2009) The SUMO-targeted ubiquitin ligase subunit Slx5 resides in nuclear foci and at sites of DNA breaks. Cell Cycle 8(7):1080-9
Gkikopoulos T, et al.  (2009) SWI/SNF and Asf1p cooperate to displace histones during induction of the saccharomyces cerevisiae HO promoter. Mol Cell Biol 29(15):4057-66