Title of article
Molecular Basis of a Million-Fold Affinity Maturation Process in a Protein–Protein Interaction
Author/Authors
Daniel A. Bonsor، نويسنده , , Sandra Postel، نويسنده , , Brian G. Pierce، نويسنده , , Ningyan Wang، نويسنده , , Penny Zhu، نويسنده , , Rebecca A. Buonpane، نويسنده , , Zhiping Weng، نويسنده , , David M. Kranz، نويسنده , , Eric J. Sundberg، نويسنده ,
Issue Information
روزنامه با شماره پیاپی سال 2011
Pages
8
From page
321
To page
328
Abstract
Protein engineering is becoming increasingly important for pharmaceutical applications where controlling the specificity and affinity of engineered proteins is required to create targeted protein therapeutics. Affinity increases of several thousand-fold are now routine for a variety of protein engineering approaches, and the structural and energetic bases of affinity maturation have been investigated in a number of such cases. Previously, a 3-million-fold affinity maturation process was achieved in a protein–protein interaction composed of a variant T-cell receptor fragment and a bacterial superantigen. Here, we present the molecular basis of this affinity increase. Using X-ray crystallography, shotgun reversion/replacement scanning mutagenesis, and computational analysis, we describe, in molecular detail, a process by which extrainterfacial regions of a protein complex can be rationally manipulated to significantly improve protein engineering outcomes.
Keywords
Protein–protein interactions , yeast display , X-ray crystallography , computational biology , protein engineering
Journal title
Journal of Molecular Biology
Serial Year
2011
Journal title
Journal of Molecular Biology
Record number
1253973
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