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Emma E Cawood

Showing results (1-10 of 12) with videos related to

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Angewandte Chemie (International Ed. in English)|March 5, 2022
Microsecond Backbone Motions Modulate the Oligomerization of the DNAJB6 ChaperoneEmma E Cawood, G Marius Clore, Theodoros K Karamanos
Angewandte Chemie (Weinheim an Der Bergstrasse, Germany)|March 20, 2024
Microsecond Backbone Motions Modulate the Oligomerization of the DNAJB6 ChaperoneEmma E Cawood, G Marius Clore, Theodoros K Karamanos
Biophysical Chemistry|November 21, 2020
Visualizing and trapping transient oligomers in amyloid assembly pathwaysEmma E Cawood, Theodoros K Karamanos, Andrew J Wilson, et al.
JACS Au|October 3, 2022
Bioorthogonal, Bifunctional Linker for Engineering Synthetic GlycoproteinsRyan McBerney, Jonathan P Dolan, Emma E Cawood, et al.
The Journal of Biological Chemistry|July 15, 2020
The role of the I<sub>T</sub>-state in D76N β<sub>2</sub>-microglobulin amyloid assembly: A crucial intermediate or an innocuous bystander?Hugh I Smith, Nicolas Guthertz, Emma E Cawood, et al.
Chemical Science|July 5, 2024
Understanding β-strand mediated protein-protein interactions: tuning binding behaviour of intrinsically disordered sequences by backbone modificationEmma E Cawood, Emily Baker, Thomas A Edwards, et al.
Journal of the American Chemical Society|November 30, 2020
Modulation of Amyloidogenic Protein Self-Assembly Using Tethered Small MoleculesEmma E Cawood, Nicolas Guthertz, Jessica S Ebo, et al.
RSC Chemical Biology|October 27, 2021
Towards optimizing peptide-based inhibitors of protein-protein interactions: predictive saturation variation scanning (PreSaVS)Kristina Hetherington, Som Dutt, Amaurys A Ibarra, et al.
Elife|September 26, 2019
Structural mapping of oligomeric intermediates in an amyloid assembly pathwayTheodoros K Karamanos, Matthew P Jackson, Antonio N Calabrese, et al.
Angewandte Chemie (International Ed. in English)|December 4, 2024
Expedited SARS-CoV-2 Main Protease Inhibitor Discovery through Modular 'Direct-to-Biology' ScreeningHarry Wilders, George Biggs, Sam M Rowe, et al.
Pageof 2

Showing results (1-10 of 12) with videos related to

Sort By:
Pageof 2
Angewandte Chemie (International Ed. in English)|March 5, 2022
Microsecond Backbone Motions Modulate the Oligomerization of the DNAJB6 ChaperoneEmma E Cawood, G Marius Clore, Theodoros K Karamanos
Angewandte Chemie (Weinheim an Der Bergstrasse, Germany)|March 20, 2024
Microsecond Backbone Motions Modulate the Oligomerization of the DNAJB6 ChaperoneEmma E Cawood, G Marius Clore, Theodoros K Karamanos
Biophysical Chemistry|November 21, 2020
Visualizing and trapping transient oligomers in amyloid assembly pathwaysEmma E Cawood, Theodoros K Karamanos, Andrew J Wilson, et al.
JACS Au|October 3, 2022
Bioorthogonal, Bifunctional Linker for Engineering Synthetic GlycoproteinsRyan McBerney, Jonathan P Dolan, Emma E Cawood, et al.
The Journal of Biological Chemistry|July 15, 2020
The role of the I<sub>T</sub>-state in D76N β<sub>2</sub>-microglobulin amyloid assembly: A crucial intermediate or an innocuous bystander?Hugh I Smith, Nicolas Guthertz, Emma E Cawood, et al.
Chemical Science|July 5, 2024
Understanding β-strand mediated protein-protein interactions: tuning binding behaviour of intrinsically disordered sequences by backbone modificationEmma E Cawood, Emily Baker, Thomas A Edwards, et al.
Journal of the American Chemical Society|November 30, 2020
Modulation of Amyloidogenic Protein Self-Assembly Using Tethered Small MoleculesEmma E Cawood, Nicolas Guthertz, Jessica S Ebo, et al.
RSC Chemical Biology|October 27, 2021
Towards optimizing peptide-based inhibitors of protein-protein interactions: predictive saturation variation scanning (PreSaVS)Kristina Hetherington, Som Dutt, Amaurys A Ibarra, et al.
Elife|September 26, 2019
Structural mapping of oligomeric intermediates in an amyloid assembly pathwayTheodoros K Karamanos, Matthew P Jackson, Antonio N Calabrese, et al.
Angewandte Chemie (International Ed. in English)|December 4, 2024
Expedited SARS-CoV-2 Main Protease Inhibitor Discovery through Modular 'Direct-to-Biology' ScreeningHarry Wilders, George Biggs, Sam M Rowe, et al.
Pageof 2