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  • Author: Martin-Yken H
  • References

Author: Martin-Yken H


References 27 references


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  • Bakir G, et al. (2024) Saccharomyces cerevisiae CellWall Remodeling in the Absence of Knr4 and Kre6 Revealed by Nano-FourierTransform Infrared Spectroscopy. Appl Spectrosc 78(4):355-364 PMID:38378014
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  • Gosselin-Monplaisir T, et al. (2023) A New Role for Yeast Cells in Health and Nutrition: Antioxidant Power Assessment. Int J Mol Sci 24(14) PMID:37511557
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  • Martin-Yken H (2020) Yeast-Based Biosensors: Current Applications and New Developments. Biosensors (Basel) 10(5) PMID:32413968
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  • Martin-Yken H, et al. (2018) Ciguatoxins activate the Calcineurin signalling pathway in Yeasts: Potential for development of an alternative detection tool? Environ Res 162:144-151 PMID:29306662
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  • Martin-Yken H, et al. (2018) A conserved fungal hub protein involved in adhesion and drug resistance in the human pathogen Candida albicans. Cell Surf 4:10-19 PMID:32743132
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  • Martin-Yken H, et al. (2016) Knr4: a disordered hub protein at the heart of fungal cell wall signalling. Cell Microbiol 18(9):1217-27 PMID:27199081
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  • Schiavone M, et al. (2016) Evidence for a Role for the Plasma Membrane in the Nanomechanical Properties of the Cell Wall as Revealed by an Atomic Force Microscopy Study of the Response of Saccharomyces cerevisiae to Ethanol Stress. Appl Environ Microbiol 82(15):4789-4801 PMID:27235439
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  • Formosa C, et al. (2015) Mapping HA-tagged protein at the surface of living cells by atomic force microscopy. J Mol Recognit 28(1):1-9 PMID:26046654
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  • Julien S, et al. (2015) Crystallographic studies of the structured core domain of Knr4 from Saccharomyces cerevisiae. Acta Crystallogr F Struct Biol Commun 71(Pt 9):1120-4 PMID:26323295
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  • Liu J, et al. (2015) Natural yeast promoter variants reveal epistasis in the generation of transcriptional-mediated noise and its potential benefit in stressful conditions. Genome Biol Evol 7(4):969-84 PMID:25762217
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  • Pillet F, et al. (2014) Uncovering by atomic force microscopy of an original circular structure at the yeast cell surface in response to heat shock. BMC Biol 12:6 PMID:24468076
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  • Schiavone M, et al. (2014) A combined chemical and enzymatic method to determine quantitatively the polysaccharide components in the cell wall of yeasts. FEMS Yeast Res 14(6):933-47 PMID:25041403
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  • Walther T, et al. (2014) Developmental stage dependent metabolic regulation during meiotic differentiation in budding yeast. BMC Biol 12:60 PMID:25178389
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  • Formosa C, et al. (2013) Nanoscale effects of caspofungin against two yeast species, Saccharomyces cerevisiae and Candida albicans. Antimicrob Agents Chemother 57(8):3498-506 PMID:23669379
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  • Francois JM, et al. (2013) Use of atomic force microscopy (AFM) to explore cell wall properties and response to stress in the yeast Saccharomyces cerevisiae. Curr Genet 59(4):187-96 PMID:24071902
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  • Martin-Yken H, et al. (2012) 10th Francophone Yeast Meeting 'Levures, Modèles & Outils'. Res Microbiol 163(5):309-15 PMID:22705268
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  • Dagkessamanskaia A, et al. (2010) Functional dissection of an intrinsically disordered protein: understanding the roles of different domains of Knr4 protein in protein-protein interactions. Protein Sci 19(7):1376-85 PMID:20506404
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  • Dagkessamanskaia A, et al. (2010) Knr4 N-terminal domain controls its localization and function during sexual differentiation and vegetative growth. Yeast 27(8):563-74 PMID:20602333
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  • Durand F, et al. (2008) Structure-function analysis of Knr4/Smi1, a newly member of intrinsically disordered proteins family, indispensable in the absence of a functional PKC1-SLT2 pathway in Saccharomyces cerevisiae. Yeast 25(8):563-76 PMID:18668512
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  • Basmaji F, et al. (2006) The 'interactome' of the Knr4/Smi1, a protein implicated in coordinating cell wall synthesis with bud emergence in Saccharomyces cerevisiae. Mol Genet Genomics 275(3):217-30 PMID:16362369
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  • Guillemot G, et al. (2006) Shear-flow induced detachment of Saccharomyces cerevisiae from stainless steel: influence of yeast and solid surface properties. Colloids Surf B Biointerfaces 49(2):126-35 PMID:16621474
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  • Lagorce A, et al. (2003) Genome-wide analysis of the response to cell wall mutations in the yeast Saccharomyces cerevisiae. J Biol Chem 278(22):20345-57 PMID:12644457
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    • Reference supplement
  • Martin-Yken H, et al. (2003) The interaction of Slt2 MAP kinase with Knr4 is necessary for signalling through the cell wall integrity pathway in Saccharomyces cerevisiae. Mol Microbiol 49(1):23-35 PMID:12823808
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  • Lagorce A, et al. (2002) Involvement of GFA1, which encodes glutamine-fructose-6-phosphate amidotransferase, in the activation of the chitin synthesis pathway in response to cell-wall defects in Saccharomyces cerevisiae. Eur J Biochem 269(6):1697-707 PMID:11895440
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  • Martin-Yken H, et al. (2002) KNR4 is a member of the PKC1 signalling pathway and genetically interacts with BCK2, a gene involved in cell cycle progression in Saccharomyces cerevisiae. Curr Genet 41(5):323-32 PMID:12185498
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  • Dagkessamanskaia A, et al. (2001) Interaction of Knr4 protein, a protein involved in cell wall synthesis, with tyrosine tRNA synthetase encoded by TYS1 in Saccharomyces cerevisiae. FEMS Microbiol Lett 200(1):53-8 PMID:11410349
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  • Martin-Yken H, et al. (2001) Saccharomyces cerevisiae YCRO17c/CWH43 encodes a putative sensor/transporter protein upstream of the BCK2 branch of the PKC1-dependent cell wall integrity pathway. Yeast 18(9):827-40 PMID:11427965
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