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Marie Sofie Møller

Showing results (1-10 of 29) with videos related to

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Molecules (Basel, Switzerland)|March 26, 2022
Impact of Modular Architecture on Activity of Glycoside Hydrolase Family 5 Subfamily 8 MannanasesMarie Sofie Møller
Frontiers in Molecular Biosciences|April 11, 2022
Structure, Function and Protein Engineering of Cereal-Type Inhibitors Acting on Amylolytic EnzymesMarie Sofie Møller, Birte Svensson
Current Opinion in Structural Biology|July 25, 2016
Structural biology of starch-degrading enzymes and their regulationMarie Sofie Møller, Birte Svensson
Biochimica Et Biophysica Acta. Proteins and Proteomics|November 3, 2019
Roles of the N-terminal domain and remote substrate binding subsites in activity of the debranching barley limit dextrinaseSusan Andersen, Birte Svensson, Marie Sofie Møller
Frontiers in Plant Science|November 29, 2018
Functional Roles of Starch Binding Domains and Surface Binding Sites in Enzymes Involved in Starch BiosynthesisCasper Wilkens, Birte Svensson, Marie Sofie Møller
Cellular and Molecular Life Sciences : CMLS|May 4, 2016
Structure and function of α-glucan debranching enzymesMarie Sofie Møller, Anette Henriksen, Birte Svensson
Methods in Molecular Biology (Clifton, N.J.)|May 6, 2023
Surface Plasmon Resonance Analysis for Quantifying Protein-Carbohydrate InteractionsMarie Sofie Møller, Darrell W Cockburn, Casper Wilkens
Protein Science : a Publication of the Protein Society|April 10, 2021
An ultra-high affinity protein-protein interface displaying sequence-robustnessMarie Sofie Møller, Sita Vaag Olesen, Ingemar André
The Science of the Total Environment|February 4, 2023
Protein-plastic interactions: The driving forces behind the high affinity of a carbohydrate-binding module for polyethylene terephthalateAndrew Philip Rennison, Peter Westh, Marie Sofie Møller
3 Biotech|May 10, 2021
A putative novel starch-binding domain revealed by in silico analysis of the N-terminal domain in bacterial amylomaltases from the family GH77Filip Mareček, Marie Sofie Møller, Birte Svensson, et al.
Pageof 3

Showing results (1-10 of 29) with videos related to

Sort By:
Pageof 3
Molecules (Basel, Switzerland)|March 26, 2022
Impact of Modular Architecture on Activity of Glycoside Hydrolase Family 5 Subfamily 8 MannanasesMarie Sofie Møller
Frontiers in Molecular Biosciences|April 11, 2022
Structure, Function and Protein Engineering of Cereal-Type Inhibitors Acting on Amylolytic EnzymesMarie Sofie Møller, Birte Svensson
Current Opinion in Structural Biology|July 25, 2016
Structural biology of starch-degrading enzymes and their regulationMarie Sofie Møller, Birte Svensson
Biochimica Et Biophysica Acta. Proteins and Proteomics|November 3, 2019
Roles of the N-terminal domain and remote substrate binding subsites in activity of the debranching barley limit dextrinaseSusan Andersen, Birte Svensson, Marie Sofie Møller
Frontiers in Plant Science|November 29, 2018
Functional Roles of Starch Binding Domains and Surface Binding Sites in Enzymes Involved in Starch BiosynthesisCasper Wilkens, Birte Svensson, Marie Sofie Møller
Cellular and Molecular Life Sciences : CMLS|May 4, 2016
Structure and function of α-glucan debranching enzymesMarie Sofie Møller, Anette Henriksen, Birte Svensson
Methods in Molecular Biology (Clifton, N.J.)|May 6, 2023
Surface Plasmon Resonance Analysis for Quantifying Protein-Carbohydrate InteractionsMarie Sofie Møller, Darrell W Cockburn, Casper Wilkens
Protein Science : a Publication of the Protein Society|April 10, 2021
An ultra-high affinity protein-protein interface displaying sequence-robustnessMarie Sofie Møller, Sita Vaag Olesen, Ingemar André
The Science of the Total Environment|February 4, 2023
Protein-plastic interactions: The driving forces behind the high affinity of a carbohydrate-binding module for polyethylene terephthalateAndrew Philip Rennison, Peter Westh, Marie Sofie Møller
3 Biotech|May 10, 2021
A putative novel starch-binding domain revealed by in silico analysis of the N-terminal domain in bacterial amylomaltases from the family GH77Filip Mareček, Marie Sofie Møller, Birte Svensson, et al.
Pageof 3