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Redesigning Protein Cavities as a Strategy for Increasing Affinity in Protein-Protein Interaction: Interferon-Receptor 1 as a Model.

Biomed Res Int.. 2014-12;  2015(2015)
JirÍ Cerny, Lada BiedermannovÁ, Pavel Mikulecky, JirÍ ZahradnÍk, Tatsiana Charnavets, Peter Šebo, and Bohdan Schneider Laboratory of Biomolecular Recognition, Institute of Biotechnology, Academy of Sciences of the Czech Republic, VÍde??skÁ 1083, 142 20 Prague, Czech Republic
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摘要

Combining computational and experimental tools, we present a new strategy for designing high affinity variants of a binding protein. The affinity is increased by mutating residues not at the interface, but at positions lining internal cavities of one of the interacting molecules. Filling the cavities lowers flexibility of the binding protein, possibly reducing entropic penalty of binding. The approach was tested using the interferon-γreceptor 1 (IFNγR1) complex with IFNγ as a model. Mutations were selected from 52 amino acid positions lining the IFNγ R1 internal cavities by using a protocol based on FoldX prediction of free energy changes. The final four mutations filling the IFNγR... More

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