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整合素结合人抗体恒定结构域——探索 C 末端结构环以嫁接 RGD 基序。

Integrin binding human antibody constant domains--probing the C-terminal structural loops for grafting the RGD motif.

机构信息

Christian Doppler Laboratory for Antibody Engineering, Vienna Institute of BioTechnology, BOKU-University of Natural Resources and Life Sciences, Muthgasse 18, Vienna, Austria.

出版信息

J Biotechnol. 2011 Sep 10;155(2):193-202. doi: 10.1016/j.jbiotec.2011.06.042. Epub 2011 Jul 8.

Abstract

Recently, it has been demonstrated that loops of the crystallizable fragment of IgG1 (IgG1-Fc) can be engineered to form antigen-binding sites. In this work C-terminal structural loops in the CH3 domains of homodimeric IgG1-Fc have been functionalized to form integrin-binding sites in order to probe the effect of engineering on structural integrity and thermal stability of IgG1-Fc as well as on binding to the ligands Protein A, CD16 and FcRn, respectively. The peptide sequence GCRGDCL--a disulfide-bridged cyclic heptapeptide that confers binding to human αvβ3 integrin was introduced into AB, CD and/or EF loops and single and double mutants were heterologously expressed in Pichia pastoris. Integrin binding of engineered IgG-Fc was tested using both binding to coated αvβ3 integrin in ELISA or to αvβ3-expressing K562 cells in FACS analysis. Additionally, blocking of αvβ3-mediated cell adhesion to vitronectin was investigated. The data presented in this report demonstrate that bioactive integrin-binding peptide(s) can be grafted on the C-terminal loops of IgG-Fc without impairing binding to effector molecules. Observed differences between the investigated variants in structural stability and integrin binding are discussed with respect to the known structure of IgG-Fc and its structural loops.

摘要

最近已经证明,IgG1 的可结晶片段(IgG1-Fc)的环可以被设计成形成抗原结合位点。在这项工作中,同二聚体 IgG1-Fc 的 CH3 结构域中的 C 末端结构环被功能化以形成整合素结合位点,以研究工程化对 IgG1-Fc 的结构完整性和热稳定性以及对配体 Protein A、CD16 和 FcRn 的结合的影响。肽序列 GCRGDCL--一种赋予与人αvβ3 整合素结合的二硫键桥接环七肽被引入 AB、CD 和/或 EF 环中,并在毕赤酵母中异源表达了单突变体和双突变体。使用 ELISA 中涂层αvβ3 整合素的结合或 FACS 分析中表达αvβ3 的 K562 细胞的结合来测试工程 IgG-Fc 的整合素结合。此外,还研究了阻断αvβ3 介导的细胞对纤连蛋白的黏附。本报告中提供的数据表明,生物活性整合素结合肽(s)可以在 IgG-Fc 的 C 末端环上嫁接,而不会损害与效应分子的结合。所研究变体在结构稳定性和整合素结合方面的差异,根据 IgG-Fc 及其结构环的已知结构进行了讨论。

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