High-affinity binding to staphylococcal protein A by an engineered dimeric Affibody molecule

被引:25
作者
Lindborg, Malin [1 ]
Dubnovitsky, Anatoly [2 ]
Olesen, Kenneth [3 ]
Bjorkman, Tomas [4 ]
Abrahmsen, Lars [1 ]
Feldwisch, Joachim [1 ]
Hard, Torleif [2 ]
机构
[1] Affibody AB, SE-17163 Solna, Sweden
[2] Swedish Univ Agr Sci SLU, Dept Mol Biol, SE-75124 Uppsala, Sweden
[3] Univ Gothenburg, Dept Biomed, SE-40530 Gothenburg, Sweden
[4] GE Healthcare Biosci AB, SE-75184 Uppsala, Sweden
基金
瑞典研究理事会;
关键词
molecular recognition; phage display; protein engineering; proteinprotein interactions; protein structure; STRUCTURAL BASIS; STABILIZATION; RECOGNITION;
D O I
10.1093/protein/gzt038
中图分类号
Q5 [生物化学]; Q7 [分子生物学];
学科分类号
071010 ; 081704 ;
摘要
Affibody molecules are engineered binding proteins, in which the three-helix bundle motif of the Z domain derived from protein A is used as a scaffold for sequence variation. We used phage display to select Affibody binders to staphylococcal protein A itself. The best binder, called ZpA963, binds with similar affinity and kinetics to the five homologous E, D, A, B and C domains of protein A, and to a five-domain protein A construct with an average dissociation constant, K-D, of 20 nM. The structure of ZpA963 in complex with the Z domain shows that it interacts with a surface on Z that is identical in the five protein A domains, which explains the multi-domain affinity. This property allows for high-affinity binding by dimeric Affibody molecules that simultaneously engage two protein A domains in a complex. We studied two ZpA963 dimers in which the subunits were linked by a C-terminal disulfide in a symmetric dimer or head-to-tail in a fusion protein, respectively. The dimers both bind protein A with high affinity, very slow off-rates and with saturation-dependent kinetics that can be understood in terms of dimer binding to multiple sites. The head-to-tail (ZpA963)(2)htt dimer binds with an off-rate of k(off) 5 10(6) s(1) and an estimated K-D 16 pM. The results illustrate how dimers of selected monomer binding proteins can provide an efficient route for engineering of high-affinity binders to targets that contain multiple homologous domains or repeated structural units.
引用
收藏
页码:635 / 644
页数:10
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