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  • Author: Park HO
  • References

Author: Park HO


References 40 references


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  • Kang PJ, et al. (2024) Cdc42 couples septin recruitment to the axial landmark assembly via Axl2 in budding yeast. J Cell Sci 137(5) PMID:37712304
    • SGD Paper
    • DOI full text
    • PMC full text
    • PubMed
  • Kang PJ, et al. (2022) Up-regulation of the Cdc42 GTPase limits the replicative life span of budding yeast. Mol Biol Cell 33(4):br5 PMID:35044837
    • SGD Paper
    • DOI full text
    • PMC full text
    • PubMed
  • Miller KE, et al. (2020) Regulation of Cdc42 for polarized growth in budding yeast. Microb Cell 7(7):175-189 PMID:32656257
    • SGD Paper
    • DOI full text
    • PMC full text
    • PubMed
  • Miller KE, et al. (2019) Temporal regulation of cell polarity via the interaction of the Ras GTPase Rsr1 and the scaffold protein Bem1. Mol Biol Cell 30(20):2543-2557 PMID:31411940
    • SGD Paper
    • DOI full text
    • PMC full text
    • PubMed
  • Singh K, et al. (2019) Genome-Wide Studies of Rho5-Interacting Proteins That Are Involved in Oxidant-Induced Cell Death in Budding Yeast. G3 (Bethesda) 9(3):921-931 PMID:30670610
    • SGD Paper
    • DOI full text
    • PMC full text
    • PubMed
  • Carmona-Gutierrez D, et al. (2018) Guidelines and recommendations on yeast cell death nomenclature. Microb Cell 5(1):4-31 PMID:29354647
    • SGD Paper
    • DOI full text
    • PMC full text
    • PubMed
  • Kang PJ, et al. (2018) The shared role of the Rsr1 GTPase and Gic1/Gic2 in Cdc42 polarization. Mol Biol Cell 29(20):2359-2369 PMID:30091649
    • SGD Paper
    • DOI full text
    • PMC full text
    • PubMed
  • Miller KE, et al. (2017) Fine-tuning the orientation of the polarity axis by Rga1, a Cdc42 GTPase-activating protein. Mol Biol Cell 28(26):3773-3788 PMID:29074565
    • SGD Paper
    • DOI full text
    • PMC full text
    • PubMed
  • Lam MH, et al. (2015) A Comprehensive Membrane Interactome Mapping of Sho1p Reveals Fps1p as a Novel Key Player in the Regulation of the HOG Pathway in S. cerevisiae. J Mol Biol 427(11):2088-103 PMID:25644660
    • SGD Paper
    • DOI full text
    • PMC full text
    • PubMed
  • Lee ME, et al. (2015) Regulation of Cdc42 polarization by the Rsr1 GTPase and Rga1, a Cdc42 GTPase-activating protein, in budding yeast. J Cell Sci 128(11):2106-17 PMID:25908844
    • SGD Paper
    • DOI full text
    • PMC full text
    • PubMed
  • Miller KE, et al. (2015) Bimolecular Fluorescence Complementation (BiFC) Analysis: Advances and Recent Applications for Genome-Wide Interaction Studies. J Mol Biol 427(11):2039-2055 PMID:25772494
    • SGD Paper
    • DOI full text
    • PMC full text
    • PubMed
  • Kang PJ, et al. (2014) Bud3 activates Cdc42 to establish a proper growth site in budding yeast. J Cell Biol 206(1):19-28 PMID:25002677
    • SGD Paper
    • DOI full text
    • PMC full text
    • PubMed
  • Han S, et al. (2013) Construction of the first compendium of chemical-genetic profiles in the fission yeast Schizosaccharomyces pombe and comparative compendium approach. Biochem Biophys Res Commun 436(4):613-8 PMID:23764396
    • SGD Paper
    • DOI full text
    • PubMed
  • Kang PJ, et al. (2013) Coupling of septins to the axial landmark by Bud4 in budding yeast. J Cell Sci 126(Pt 5):1218-26 PMID:23345395
    • SGD Paper
    • DOI full text
    • PMC full text
    • PubMed
  • Lo WC, et al. (2013) Polarization of diploid daughter cells directed by spatial cues and GTP hydrolysis of Cdc42 budding yeast. PLoS One 8(2):e56665 PMID:23437206
    • SGD Paper
    • DOI full text
    • PMC full text
    • PubMed
  • Snider J, et al. (2013) Mapping the functional yeast ABC transporter interactome. Nat Chem Biol 9(9):565-72 PMID:23831759
    • SGD Paper
    • DOI full text
    • PMC full text
    • PubMed
  • Bi E and Park HO (2012) Cell polarization and cytokinesis in budding yeast. Genetics 191(2):347-87 PMID:22701052
    • SGD Paper
    • DOI full text
    • PMC full text
    • PubMed
  • Kang PJ, et al. (2012) Bud4 mediates the cell-type-specific assembly of the axial landmark in budding yeast. J Cell Sci 125(Pt 16):3840-9 PMID:22553209
    • SGD Paper
    • DOI full text
    • PMC full text
    • PubMed
  • Nelson SA, et al. (2012) A novel role for the GTPase-activating protein Bud2 in the spindle position checkpoint. PLoS One 7(4):e36127 PMID:22558355
    • SGD Paper
    • DOI full text
    • PMC full text
    • PubMed
  • Tange Y, et al. (2012) The CCR4-NOT complex is implicated in the viability of aneuploid yeasts. PLoS Genet 8(6):e1002776 PMID:22737087
    • SGD Paper
    • DOI full text
    • PMC full text
    • PubMed
  • Lee ME, et al. (2011) The Rho1 GTPase acts together with a vacuolar glutathione S-conjugate transporter to protect yeast cells from oxidative stress. Genetics 188(4):859-70 PMID:21625004
    • SGD Paper
    • DOI full text
    • PMC full text
    • PubMed
  • Kang PJ, et al. (2010) The Rsr1/Bud1 GTPase interacts with itself and the Cdc42 GTPase during bud-site selection and polarity establishment in budding yeast. Mol Biol Cell 21(17):3007-16 PMID:20587777
    • SGD Paper
    • DOI full text
    • PMC full text
    • PubMed
  • Dodgson J, et al. (2009) Functional genomics of adhesion, invasion, and mycelial formation in Schizosaccharomyces pombe. Eukaryot Cell 8(8):1298-306 PMID:19542312
    • SGD Paper
    • DOI full text
    • PMC full text
    • PubMed
  • Dixon SJ, et al. (2008) Significant conservation of synthetic lethal genetic interaction networks between distantly related eukaryotes. Proc Natl Acad Sci U S A 105(43):16653-8 PMID:18931302
    • SGD Paper
    • DOI full text
    • PMC full text
    • PubMed
  • Roguev A, et al. (2008) Conservation and rewiring of functional modules revealed by an epistasis map in fission yeast. Science 322(5900):405-10 PMID:18818364
    • SGD Paper
    • DOI full text
    • PMC full text
    • PubMed
  • Singh K, et al. (2008) The Rho5 GTPase is necessary for oxidant-induced cell death in budding yeast. Proc Natl Acad Sci U S A 105(5):1522-7 PMID:18216266
    • SGD Paper
    • DOI full text
    • PMC full text
    • PubMed
  • Park HO and Bi E (2007) Central roles of small GTPases in the development of cell polarity in yeast and beyond. Microbiol Mol Biol Rev 71(1):48-96 PMID:17347519
    • SGD Paper
    • DOI full text
    • PMC full text
    • PubMed
  • Kang PJ, et al. (2004) Interactions among Rax1p, Rax2p, Bud8p, and Bud9p in marking cortical sites for bipolar bud-site selection in yeast. Mol Biol Cell 15(11):5145-57 PMID:15356260
    • SGD Paper
    • DOI full text
    • PMC full text
    • PubMed
  • Kang PJ, et al. (2004) Specific residues of the GDP/GTP exchange factor Bud5p are involved in establishment of the cell type-specific budding pattern in yeast. J Biol Chem 279(27):27980-5 PMID:15136576
    • SGD Paper
    • DOI full text
    • PubMed
  • Kozminski KG, et al. (2003) Interaction between a Ras and a Rho GTPase couples selection of a growth site to the development of cell polarity in yeast. Mol Biol Cell 14(12):4958-70 PMID:12960420
    • SGD Paper
    • DOI full text
    • PMC full text
    • PubMed
  • Park HO, et al. (2002) Localization of the Rsr1/Bud1 GTPase involved in selection of a proper growth site in yeast. J Biol Chem 277(30):26721-4 PMID:12058023
    • SGD Paper
    • DOI full text
    • PubMed
  • Kang PJ, et al. (2001) A GDP/GTP exchange factor involved in linking a spatial landmark to cell polarity. Science 292(5520):1376-8 PMID:11313501
    • SGD Paper
    • DOI full text
    • PMC full text
    • PubMed
  • Park HO, et al. (1999) Localization of Bud2p, a GTPase-activating protein necessary for programming cell polarity in yeast to the presumptive bud site. Genes Dev 13(15):1912-7 PMID:10444589
    • SGD Paper
    • DOI full text
    • PMC full text
    • PubMed
  • Park HO, et al. (1997) Two active states of the Ras-related Bud1/Rsr1 protein bind to different effectors to determine yeast cell polarity. Proc Natl Acad Sci U S A 94(9):4463-8 PMID:9114012
    • SGD Paper
    • DOI full text
    • PMC full text
    • PubMed
  • Peter M, et al. (1996) Functional analysis of the interaction between the small GTP binding protein Cdc42 and the Ste20 protein kinase in yeast. EMBO J 15(24):7046-59 PMID:9003780
    • SGD Paper
    • PMC full text
    • PubMed
  • Herskowitz I, et al. (1995) Programming of cell polarity in budding yeast by endogenous and exogenous signals. Cold Spring Harb Symp Quant Biol 60:717-27 PMID:8824447
    • SGD Paper
    • DOI full text
    • PubMed
  • Park HO, et al. (1993) BUD2 encodes a GTPase-activating protein for Bud1/Rsr1 necessary for proper bud-site selection in yeast. Nature 365(6443):269-74 PMID:8371782
    • SGD Paper
    • DOI full text
    • PubMed
  • Park HO and Craig EA (1991) Transcriptional regulation of a yeast HSP70 gene by heat shock factor and an upstream repression site-binding factor. Genes Dev 5(7):1299-308 PMID:2065978
    • SGD Paper
    • DOI full text
    • PubMed
  • Park HO and Craig EA (1989) Positive and negative regulation of basal expression of a yeast HSP70 gene. Mol Cell Biol 9(5):2025-33 PMID:2664467
    • SGD Paper
    • DOI full text
    • PMC full text
    • PubMed
  • Craig EA et al. (1987) "Regulation of a heat shock Gene." Pp. 267-278 in RNA Polymerase and the Regulation of Transcription: Proceedings of the 16th Steenbock Symposium, edited by Reznikoff W, Burgess RR, Gross CA, Wickens MP, Dahlberg JE. New York: Elsevier Science
    • SGD Paper
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