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Dao HT, Dul BE, Dann GP, Liszczak GP, Muir TW. A basic motif anchoring ISWI to nucleosome acidic patch regulates nucleosome spacing. Nat Chem Biol. 2020 ;16(2):134-142.
Murawska M, Schauer T, Matsuda A, Wilson MD, Pysik T, Wojcik F, et al. The Chaperone FACT and Histone H2B Ubiquitination Maintain S. pombe Genome Architecture through Genic and Subtelomeric Functions. Mol Cell. 2020 ;77(3):501-513.e7.
P Garcia D, Leach RW, Wadsworth GM, Choudhary K, Li H, Aviran S, et al. Stability and nuclear localization of yeast telomerase depend on protein components of RNase P/MRP. Nat Commun. 2020 ;11(1):2173.
Gibney PA, Chen A, Schieler A, Chen JC, Xu Y, Hendrickson DG, et al. A tps1Δ persister-like state in Saccharomyces cerevisiae is regulated by MKT1. PLoS One. 2020 ;15(5):e0233779.
Hall AE, Rose MD. Cell fusion in yeast is negatively regulated by components of the cell wall integrity pathway. Mol Biol Cell. 2019 ;30(4):441-452.
Chen C-F, Pohl TJ, Chan A, Slocum JS, Zakian VA. Centromere RNA Is Negatively Regulated by Cbf1 and Its Unscheduled Synthesis Impacts CenH3 Binding. Genetics. 2019 ;213(2):465-479.
Kuroda K, Hammer SK, Watanabe Y, López JMontaño, Fink GR, Stephanopoulos G, et al.. Critical Roles of the Pentose Phosphate Pathway and GLN3 in Isobutanol-Specific Tolerance in Yeast. Cell Syst. 2019 ;9(6):534-547.e5.
Pohl TJ, Zakian VA. Pif1 family DNA helicases: A helpmate to RNase H?. DNA Repair (Amst). 2019 ;84:102633.
Tye BW, Commins N, Ryazanova LV, Wühr M, Springer M, Pincus D, et al.. Proteotoxicity from aberrant ribosome biogenesis compromises cell fitness. Elife. 2019 ;8.
Travis SM, Kokona B, Fairman R, Hughson FM. Roles of singleton tryptophan motifs in COPI coat stability and vesicle tethering. Proc Natl Acad Sci U S A. 2019 ;116(48):24031-24040.
Chen C-F, Pohl TJ, Pott S, Zakian VA. Two Pif1 Family DNA Helicases Cooperate in Centromere Replication and Segregation in . Genetics. 2019 ;211(1):105-119.
Jeon J, McGinty RK, Muir TW, Kim J-A, Kim J. Crosstalk among Set1 complex subunits involved in H2B ubiquitylation-dependent H3K4 methylation. Nucleic Acids Res. 2018 ;46(21):11129-11143.
Xu Y-F, Lu W, Chen JC, Johnson SA, Gibney PA, Thomas DG, et al. Discovery and Functional Characterization of a Yeast Sugar Alcohol Phosphatase. ACS Chem Biol. 2018 ;13(10):3011-3020.
Geronimo CL, Singh SP, Galletto R, Zakian VA. The signature motif of the Saccharomyces cerevisiae Pif1 DNA helicase is essential in vivo for mitochondrial and nuclear functions and in vitro for ATPase activity. Nucleic Acids Res. 2018 ;46(16):8357-8370.
Allard CAH, Decker F, Weiner OD, Toettcher JE, Graziano BR. A size-invariant bud-duration timer enables robustness in yeast cell size control. PLoS One. 2018 ;13(12):e0209301.
Geronimo CL, Zakian VA. Getting it done at the ends: Pif1 family DNA helicases and telomeres. DNA Repair (Amst). 2016 ;44:151-158.
Costanzo M, VanderSluis B, Koch EN, Baryshnikova A, Pons C, Tan G, et al. A global genetic interaction network maps a wiring diagram of cellular function. Science. 2016 ;353(6306).
Smith JA, Rose MD. Kel1p Mediates Yeast Cell Fusion Through a Fus2p- and Cdc42p-Dependent Mechanism. Genetics. 2016 ;202(4):1421-35.
Ha JYong, Chou H-T, Ungar D, Yip CK, Walz T, Hughson FM. Molecular architecture of the complete COG tethering complex. Nat Struct Mol Biol. 2016 ;23(8):758-60.
Hackett SR, Zanotelli VRT, Xu W, Goya J, Park JO, Perlman DH, et al. Systems-level analysis of mechanisms regulating yeast metabolic flux. Science. 2016 ;354(6311).