Protein engineering in the 21st century
Author:
Affiliation:
1. Department of Chemistry; University of Ottawa; Ottawa Ontario Canada K1N 6N5
Funder
University of Ottawa
Publisher
Wiley
Subject
Molecular Biology,Biochemistry
Link
http://onlinelibrary.wiley.com/wol1/doi/10.1002/pro.2656/fullpdf
Reference14 articles.
1. Asymmetric mutations in the tetrameric R67 dihydrofolate reductase reveal high tolerance to active-site substitutions;Ebert;Protein Sci,2015
2. Combinatorial active-site variants confer sustained clavulanate resistance in BlaC beta-lactamase from Mycobacterium tuberculosis;Egesborg;Protein Sci,2015
3. Influence of hydrophobic mismatch on the catalytic activity of Escherichia coli GlpG rhomboid protease;Foo;Protein Sci,2015
4. Increasing the affinity of selective bZIP-binding peptides through surface residue redesign;Kaplan;Protein Sci,2014
5. Design and characterization of ebolavirus GP prehairpin intermediate mimics as drug targets;Clinton;Protein Sci,2015
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4. Engineered protein–iron oxide hybrid biomaterial for MRI-traceable drug encapsulation;Molecular Systems Design & Engineering;2022
5. Heuristics in Role of Human Glutathione S-transferase Mu 1 as Nitric Oxide Carrier and its Engineered Variants for Enhanced Activity;Current Pharmaceutical Biotechnology;2021-12
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