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Maria Andreasen

Showing results (1-10 of 32) with videos related to

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Elife|December 1, 2020
Cross-talk between individual phenol-soluble modulins in <i>Staphylococcus aureus</i> biofilm enables rapid and efficient amyloid formationMasihuz Zaman, Maria Andreasen
Chemical Science|June 27, 2022
Functional amyloids from bacterial biofilms - structural properties and interaction partnersÜmit Akbey, Maria Andreasen
Microorganisms|January 12, 2021
Modulating Kinetics of the Amyloid-Like Aggregation of <i>S. aureus</i> Phenol-Soluble Modulins by Changes in pHMasihuz Zaman, Maria Andreasen
Biochimica Et Biophysica Acta|February 11, 2015
Interactions between misfolded protein oligomers and membranes: A central topic in neurodegenerative diseases?Maria Andreasen, Nikolai Lorenzen, Daniel Otzen
International Journal of Molecular Sciences|January 11, 2024
Differential Effects of Lipid Bilayers on αPSM Peptide Functional Amyloid FormationKamilla Kristoffersen, Kasper Holst Hansen, Maria Andreasen
Proceedings of the National Academy of Sciences of the United States of America|April 23, 2015
Preventing peptide and protein misbehaviorPaolo Arosio, Georg Meisl, Maria Andreasen, et al.
The Journal of Biological Chemistry|July 16, 2021
Heparin promotes fibrillation of most phenol-soluble modulin virulence peptides from Staphylococcus aureusZahra Najarzadeh, Masihuz Zaman, Vita Sereikaite, et al.
The FEBS Journal|February 13, 2024
Intrinsically disordered Pseudomonas chaperone FapA slows down the fibrillation of major biofilm-forming functional amyloid FapCChang-Hyeock Byeon, Kasper Holst Hansen, Jasper Jeffrey, et al.
Protein Science : a Publication of the Protein Society|December 29, 2018
Imperfect repeats in the functional amyloid protein FapC reduce the tendency to fragment during fibrillationCasper B Rasmussen, Gunna Christiansen, Brian S Vad, et al.
Scientific Reports|February 21, 2019
Hyperosmotic stress induces cell-dependent aggregation of α-synucleinAlexandra M C Fragniere, Simon R W Stott, Shaline V Fazal, et al.
Pageof 4

Showing results (1-10 of 32) with videos related to

Sort By:
Pageof 4
Elife|December 1, 2020
Cross-talk between individual phenol-soluble modulins in <i>Staphylococcus aureus</i> biofilm enables rapid and efficient amyloid formationMasihuz Zaman, Maria Andreasen
Chemical Science|June 27, 2022
Functional amyloids from bacterial biofilms - structural properties and interaction partnersÜmit Akbey, Maria Andreasen
Microorganisms|January 12, 2021
Modulating Kinetics of the Amyloid-Like Aggregation of <i>S. aureus</i> Phenol-Soluble Modulins by Changes in pHMasihuz Zaman, Maria Andreasen
Biochimica Et Biophysica Acta|February 11, 2015
Interactions between misfolded protein oligomers and membranes: A central topic in neurodegenerative diseases?Maria Andreasen, Nikolai Lorenzen, Daniel Otzen
International Journal of Molecular Sciences|January 11, 2024
Differential Effects of Lipid Bilayers on αPSM Peptide Functional Amyloid FormationKamilla Kristoffersen, Kasper Holst Hansen, Maria Andreasen
Proceedings of the National Academy of Sciences of the United States of America|April 23, 2015
Preventing peptide and protein misbehaviorPaolo Arosio, Georg Meisl, Maria Andreasen, et al.
The Journal of Biological Chemistry|July 16, 2021
Heparin promotes fibrillation of most phenol-soluble modulin virulence peptides from Staphylococcus aureusZahra Najarzadeh, Masihuz Zaman, Vita Sereikaite, et al.
The FEBS Journal|February 13, 2024
Intrinsically disordered Pseudomonas chaperone FapA slows down the fibrillation of major biofilm-forming functional amyloid FapCChang-Hyeock Byeon, Kasper Holst Hansen, Jasper Jeffrey, et al.
Protein Science : a Publication of the Protein Society|December 29, 2018
Imperfect repeats in the functional amyloid protein FapC reduce the tendency to fragment during fibrillationCasper B Rasmussen, Gunna Christiansen, Brian S Vad, et al.
Scientific Reports|February 21, 2019
Hyperosmotic stress induces cell-dependent aggregation of α-synucleinAlexandra M C Fragniere, Simon R W Stott, Shaline V Fazal, et al.
Pageof 4