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Thermodynamics of Folding and Binding in an Affibody:Affibody Complex
- Source :
- Journal of Molecular Biology. 359:1305-1315
- Publication Year :
- 2006
- Publisher :
- Elsevier BV, 2006.
-
Abstract
- Affibody binding proteins are selected from phage-displayed libraries of variants of the 58 residue Z domain. Z(Taq) is an affibody originally selected as a binder to Taq DNA polymerase. The anti-Z(Taq) affibody was selected as a binder to Z(Taq) and the Z(Taq):anti-Z(Taq) complex is formed with a dissociation constant K(d)=0.1 microM. We have determined the structure of the Z(Taq):anti-Z(Taq) complex as well as the free state structures of Z(Taq) and anti-Z(Taq) using NMR. Here we complement the structural data with thermodynamic studies of Z(Taq) and anti-Z(Taq) folding and complex formation. Both affibody proteins show cooperative two-state thermal denaturation at melting temperatures T(M) approximately 56 degrees C. Z(Taq):anti-Z(Taq) complex formation at 25 degrees C in 50 mM NaCl and 20 mM phosphate buffer (pH 6.4) is enthalpy driven with DeltaH degrees (bind) = -9.0 (+/-0.1) kcal mol(-1)(.) The heat capacity change DeltaC(P) degrees (,bind)=-0.43 (+/-0.01) kcal mol(-1) K(-1) is in accordance with the predominantly non-polar character of the binding surface, as judged from calculations based on changes in accessible surface areas. A further dissection of the small binding entropy at 25 degrees C (-TDeltaS degrees (bind) = -0.6 (+/-0.1) kcal mol(-1)) suggests that a favourable desolvation of non-polar surface is almost completely balanced by unfavourable conformational entropy changes and loss of rotational and translational entropy. Such effects can therefore be limiting for strong binding also when interacting protein components are stable and homogeneously folded. The combined structure and thermodynamics data suggest that protein properties are not likely to be a serious limitation for the development of engineered binding proteins based on the Z domain.
- Subjects :
- Protein Folding
Magnetic Resonance Spectroscopy
Calorimetry, Differential Scanning
Chemistry
Stereochemistry
Circular Dichroism
Recombinant Fusion Proteins
Temperature
Protein engineering
DNA-binding protein
Folding (chemistry)
Residue (chemistry)
Crystallography
Protein stability
Molecular recognition
Structural Biology
Thermodynamics
Molecular Biology
Heteronuclear single quantum coherence spectroscopy
Protein Binding
Taq DNA Polymerase
Subjects
Details
- ISSN :
- 00222836
- Volume :
- 359
- Database :
- OpenAIRE
- Journal :
- Journal of Molecular Biology
- Accession number :
- edsair.doi.dedup.....90997302e6f582c944cad8adaff9d512
- Full Text :
- https://doi.org/10.1016/j.jmb.2006.04.041