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  • Author: Dufrêne YF
  • References

Author: Dufrêne YF


References 17 references


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  • Lipke PN, et al. (2021) A New Function for Amyloid-Like Interactions: Cross-Beta Aggregates of Adhesins form Cell-to-Cell Bonds. Pathogens 10(8) PMID:34451476
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  • Mathelié-Guinlet M, et al. (2021) Single-cell fluidic force microscopy reveals stress-dependent molecular interactions in yeast mating. Commun Biol 4(1):33 PMID:33397995
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  • Chan CX, et al. (2016) Force Sensitivity in Saccharomyces cerevisiae Flocculins. mSphere 1(4) PMID:27547825
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  • El-Kirat-Chatel S, et al. (2015) Forces in yeast flocculation. Nanoscale 7(5):1760-7 PMID:25515338
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  • Kock C, et al. (2015) Up against the wall: is yeast cell wall integrity ensured by mechanosensing in plasma membrane microdomains? Appl Environ Microbiol 81(3):806-11 PMID:25398859
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  • Dupres V, et al. (2011) Atomic force microscopy demonstrates that disulfide bridges are required for clustering of the yeast cell wall integrity sensor Wsc1. Langmuir 27(24):15129-34 PMID:22107047
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  • Dufrêne YF (2010) Atomic force microscopy of fungal cell walls: an update. Yeast 27(8):465-71 PMID:20641013
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  • Dupres V, et al. (2010) Measuring cell wall thickness in living yeast cells using single molecular rulers. ACS Nano 4(9):5498-504 PMID:20804167
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  • Heinisch JJ and Dufrêne YF (2010) Is there anyone out there?--Single-molecule atomic force microscopy meets yeast genetics to study sensor functions. Integr Biol (Camb) 2(9):408-15 PMID:20648385
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  • Heinisch JJ, et al. (2010) Single-molecule atomic force microscopy reveals clustering of the yeast plasma-membrane sensor Wsc1. PLoS One 5(6):e11104 PMID:20559440
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  • Heinisch JJ, et al. (2010) Measurement of the mechanical behavior of yeast membrane sensors using single-molecule atomic force microscopy. Nat Protoc 5(4):670-7 PMID:20360762
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  • Dupres V, et al. (2009) The yeast Wsc1 cell surface sensor behaves like a nanospring in vivo. Nat Chem Biol 5(11):857-62 PMID:19767735
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  • Francius G, et al. (2009) Stretching polysaccharides on live cells using single molecule force spectroscopy. Nat Protoc 4(6):939-46 PMID:19478809
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  • Alsteens D, et al. (2008) Structure, cell wall elasticity and polysaccharide properties of living yeast cells, as probed by AFM. Nanotechnology 19(38):384005 PMID:21832565
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  • Dague E, et al. (2007) Towards a nanoscale view of fungal surfaces. Yeast 24(4):229-37 PMID:17230582
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  • Gaboriaud F and Dufrêne YF (2007) Atomic force microscopy of microbial cells: application to nanomechanical properties, surface forces and molecular recognition forces. Colloids Surf B Biointerfaces 54(1):10-9 PMID:17067786
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  • Ahimou F, et al. (2003) Real-time imaging of the surface topography of living yeast cells by atomic force microscopy. Yeast 20(1):25-30 PMID:12489123
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