Methods in Protein Design
This new volume of Methods in Enzymology continues the legacy of this premier serial by containing quality chapters authored by leaders in the field. This volume covers methods in protein design and it has chapters on such topics as protein switch...
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This new volume of Methods in Enzymology continues the legacy of this premier serial by containing quality chapters authored by leaders in the field. This volume covers methods in protein design and it has chapters on such topics as protein switch engineering by domain insertion, evolution based design of proteins, and computationally designed proteins.
Bibliographische Angaben
- Herausgegeben:Keating, Amy
- Verlag: Academic Press
- EAN: 9780123942920
Inhaltsverzeichnis zu „Methods in Protein Design “
Computational Design of Novel Protein Binders and Experimental Affinity MaturationMining Tertiary Structural Motifs for Assessment of Designability
Computational Methods for Controlling Binding Specificity Flexible Backbone Sampling Methods to Model and Design Protein Alternative Conformations OSPREY: Protein Design with Ensembles, Flexibility, and Provable Algorithms Scientific Benchmarks for Guiding Macromolecular Energy Function Improvement
Molecular Dynamics Simulations for the Ranking, Evaluation, and Refinement of Computationally Designed Proteins Multi-State Protein Design Using CLEVER and CLASSY Using Analyses of Amino Acid Coevolution to Understand Protein Structure and Function Evolution Based Design of Proteins Protein Engineering and Stabilization from Sequence Statistics: Variation and Co-Variation Analysis Enzyme Engineering by Targeted Libraries Generation of High-Performance Binding Proteins for Peptide Motifs by Affinity Clamping Engineering Fibronectin-Based Binding Proteins by Yeast Surface Display Engineering and Analysis of Peptide-Recognition Domain Specificities by Phage Display and Deep Sequencing Efficient Sampling of SCHEMA Chimera Families to Identify Useful Sequence Elements Protein Switch Engineering by Domain Insertion Design of Chimeric Proteins by Combination of Subdomain-Sized Fragments
a-Helix Mimicry with a/ß-Peptides
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