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工程化二聚体 Affibody 分子与葡萄球菌蛋白 A 的高亲和力结合。

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

机构信息

Affibody AB, Gunnar Asplunds Allé 24, SE-171 63 Solna, Sweden.

出版信息

Protein Eng Des Sel. 2013 Oct;26(10):635-44. doi: 10.1093/protein/gzt038. Epub 2013 Aug 7.

DOI:10.1093/protein/gzt038
PMID:23924760
Abstract

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)2htt 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.

摘要

亲和体分子是经过工程改造的结合蛋白,其中源自蛋白 A 的三螺旋束结构域被用作序列变异的支架。我们使用噬菌体展示技术来选择对葡萄球菌蛋白 A 本身具有亲和力的亲和体结合物。最好的结合物称为 ZpA963,它与蛋白 A 的五个同源 E、D、A、B 和 C 结构域以及具有平均解离常数(K(D))约为 20 nM 的五结构域蛋白 A 构建体具有相似的亲和力和动力学。ZpA963 与 Z 结构域复合物的结构表明,它与 Z 结构域上的一个表面相互作用,该表面在五个蛋白 A 结构域中是相同的,这解释了多结构域亲和力。这种特性允许二聚体亲和体分子以高亲和力结合,这些分子同时在复合物中结合两个蛋白 A 结构域。我们研究了两个 ZpA963 二聚体,其中亚基通过 C 端二硫键在对称二聚体中或在融合蛋白中头对头连接。这两种二聚体都以高亲和力结合蛋白 A,具有非常慢的离解速率和饱和依赖性动力学,可以根据二聚体结合多个位点来理解。头对头(ZpA963)2htt 二聚体的离解速率 k(off) ≤ 5×10(-6) s(-1),估计 K(D) ≤ 16 pM。结果表明,选择的单体结合蛋白的二聚体如何为设计对包含多个同源结构域或重复结构单元的靶标具有高亲和力的结合物提供有效的途径。

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