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Nature Communications
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January 17, 2020
Generating quantitative binding landscapes through fractional binding selections combined with deep sequencing and data normalization
Michael Heyne, Niv Papo, Julia M Shifman
Trends in Biochemical Sciences
|
April 11, 2016
Protein Engineering by Combined Computational and In Vitro Evolution Approaches
Lior Rosenfeld, Michael Heyne, Julia M Shifman, et al.
Journal of Molecular Biology
|
November 29, 2016
Identifying Residues that Determine SCF Molecular-Level Interactions through a Combination of Experimental and In silico Analyses
Eitan Rabinovich, Michael Heyne, Anna Bakhman, et al.
Journal of the American Chemical Society
|
October 5, 2021
Climbing Up and Down Binding Landscapes through Deep Mutational Scanning of Three Homologous Protein-Protein Complexes
Michael Heyne, Jason Shirian, Itay Cohen, et al.
Scientific Reports
|
August 10, 2021
A KLK4 proteinase substrate capture approach to antagonize PAR1
Eitan Rabinovitch, Koishiro Mihara, Amiram Sananes, et al.
Page
of 1
Search research articles
Search
Showing results (1-10 of 5) with videos related to
Sort By:
Page
of 1
Nature Communications
|
January 17, 2020
Generating quantitative binding landscapes through fractional binding selections combined with deep sequencing and data normalization
Michael Heyne, Niv Papo, Julia M Shifman
Trends in Biochemical Sciences
|
April 11, 2016
Protein Engineering by Combined Computational and In Vitro Evolution Approaches
Lior Rosenfeld, Michael Heyne, Julia M Shifman, et al.
Journal of Molecular Biology
|
November 29, 2016
Identifying Residues that Determine SCF Molecular-Level Interactions through a Combination of Experimental and In silico Analyses
Eitan Rabinovich, Michael Heyne, Anna Bakhman, et al.
Journal of the American Chemical Society
|
October 5, 2021
Climbing Up and Down Binding Landscapes through Deep Mutational Scanning of Three Homologous Protein-Protein Complexes
Michael Heyne, Jason Shirian, Itay Cohen, et al.
Scientific Reports
|
August 10, 2021
A KLK4 proteinase substrate capture approach to antagonize PAR1
Eitan Rabinovitch, Koishiro Mihara, Amiram Sananes, et al.
Page
of 1