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  • Author: Gladfelter AS
  • References

Author: Gladfelter AS


References 25 references


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  • El Baidouri F, et al. (2021) Evolution and Physiology of Amphibious Yeasts. Annu Rev Microbiol 75:337-357 PMID:34351793
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  • Woods BL, et al. (2021) Interplay of septin amphipathic helices in sensing membrane-curvature and filament bundling. Mol Biol Cell 32(20):br5 PMID:34319771
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  • Khan A, et al. (2018) Control of septin filament flexibility and bundling by subunit composition and nucleotide interactions. Mol Biol Cell 29(6):702-712 PMID:29321251
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  • Smith JA and Gladfelter AS (2017) Lessons from Yeast on How to Avoid Stress Eating. Dev Cell 43(1):3-5 PMID:29017028
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  • Abrahamsson S, et al. (2015) MultiFocus Polarization Microscope (MF-PolScope) for 3D polarization imaging of up to 25 focal planes simultaneously. Opt Express 23(6):7734-54 PMID:25837112
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  • Bridges AA and Gladfelter AS (2015) Septin Form and Function at the Cell Cortex. J Biol Chem 290(28):17173-80 PMID:25957401
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  • Kaplan C, et al. (2015) Absolute Arrangement of Subunits in Cytoskeletal Septin Filaments in Cells Measured by Fluorescence Microscopy. Nano Lett 15(6):3859-64 PMID:25939363
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  • McQuilken M, et al. (2015) Polarized Fluorescence Microscopy to Study Cytoskeleton Assembly and Organization in Live Cells. Curr Protoc Cell Biol 67:4.29.1-4.29.13 PMID:26061244
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  • Bridges AA and Gladfelter AS (2014) Fungal pathogens are platforms for discovering novel and conserved septin properties. Curr Opin Microbiol 20:42-8 PMID:24879478
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  • Bridges AA, et al. (2014) Septin assemblies form by diffusion-driven annealing on membranes. Proc Natl Acad Sci U S A 111(6):2146-51 PMID:24469790
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  • Meseroll RA, et al. (2012) Septin ring size scaling and dynamics require the coiled-coil region of Shs1p. Mol Biol Cell 23(17):3391-406 PMID:22767579
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  • Spiliotis ET and Gladfelter AS (2012) Spatial guidance of cell asymmetry: septin GTPases show the way. Traffic 13(2):195-203 PMID:21883761
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  • Anker JF and Gladfelter AS (2011) Axl2 integrates polarity establishment, maintenance, and environmental stress response in the filamentous fungus Ashbya gossypii. Eukaryot Cell 10(12):1679-93 PMID:21984708
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  • DeMay BS, et al. (2011) Rapid and quantitative imaging of excitation polarized fluorescence reveals ordered septin dynamics in live yeast. Biophys J 101(4):985-94 PMID:21843491
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  • DeMay BS, et al. (2011) Septin filaments exhibit a dynamic, paired organization that is conserved from yeast to mammals. J Cell Biol 193(6):1065-81 PMID:21670216
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  • Nair DR, et al. (2010) A conserved G₁ regulatory circuit promotes asynchronous behavior of nuclei sharing a common cytoplasm. Cell Cycle 9(18):3771-9 PMID:20930528
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  • Gladfelter AS, et al. (2005) Interplay between septin organization, cell cycle and cell shape in yeast. J Cell Sci 118(Pt 8):1617-28 PMID:15784684
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  • Gladfelter AS, et al. (2004) Genetic interactions among regulators of septin organization. Eukaryot Cell 3(4):847-54 PMID:15302817
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  • Irazoqui JE, et al. (2004) Cdc42p, GTP hydrolysis, and the cell's sense of direction. Cell Cycle 3(7):861-4 PMID:15190213
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  • Irazoqui JE, et al. (2003) Scaffold-mediated symmetry breaking by Cdc42p. Nat Cell Biol 5(12):1062-70 PMID:14625559
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  • Gladfelter AS, et al. (2002) Septin ring assembly involves cycles of GTP loading and hydrolysis by Cdc42p. J Cell Biol 156(2):315-26 PMID:11807094
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  • Adamo JE, et al. (2001) Yeast Cdc42 functions at a late step in exocytosis, specifically during polarized growth of the emerging bud. J Cell Biol 155(4):581-92 PMID:11706050
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  • Gladfelter AS, et al. (2001) The septin cortex at the yeast mother-bud neck. Curr Opin Microbiol 4(6):681-9 PMID:11731320
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  • Gladfelter AS, et al. (2001) Isolation and characterization of effector-loop mutants of CDC42 in yeast. Mol Biol Cell 12(5):1239-55 PMID:11359919
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  • Moskow JJ, et al. (2000) Role of Cdc42p in pheromone-stimulated signal transduction in Saccharomyces cerevisiae. Mol Cell Biol 20(20):7559-71 PMID:11003652
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