Centre for Tumour Biology, Barts Cancer Institute, Queen Mary's University of London, London, United Kingdom.
PLoS One. 2013 Aug 9;8(8):e70452. doi: 10.1371/journal.pone.0070452. eCollection 2013.
We have developed a structurally-guided scaffold phage display strategy for identification of ligand mimetic bio-therapeutics. As a proof of concept we used the ligand of integrin αvβ6, a tumour cell surface receptor and a major new target for imaging and therapy of many types of solid cancer. NMR structure analysis showed that RGD-helix structures are optimal for αvβ6 ligand-interaction, so we designed novel algorithms to generate human single chain fragment variable (scFv) libraries with synthetic VH-CDR3 encoding RGD-helix hairpins with helices of differing pitch, length and amino acid composition. Study of the lead scFv clones D25scFv and D34scFv and their corresponding VH-CDR3 derived peptides, D25p and D34p, demonstrated: specific binding to recombinant and cellular αvβ6; inhibition of αvβ6-dependent cell and ligand adhesion, αvβ6-dependent cell internalisation; and selective retention by αvβ6-expressing, but not αvβ6-negative, human xenografts. NMR analysis established that both the D25p and D34p retained RGD-helix structures confirming the success of the algorithm. In conclusion, scFv libraries can be engineered based on ligand structural motifs to increase the likelihood of developing powerful bio-therapeutics.
我们开发了一种基于结构的支架噬菌体展示策略,用于鉴定配体模拟的生物治疗药物。作为概念验证,我们使用了整合素 αvβ6 的配体,整合素 αvβ6 是肿瘤细胞表面受体,也是许多类型实体瘤成像和治疗的主要新靶点。NMR 结构分析表明,RGD 螺旋结构是 αvβ6 配体相互作用的最佳结构,因此我们设计了新的算法,生成具有合成 VH-CDR3 编码 RGD 螺旋发夹的人单链片段可变 (scFv) 文库,这些发夹具有不同螺距、长度和氨基酸组成的螺旋。对先导 scFv 克隆 D25scFv 和 D34scFv 及其相应的 VH-CDR3 衍生肽 D25p 和 D34p 的研究表明:与重组和细胞 αvβ6 特异性结合;抑制 αvβ6 依赖性细胞和配体黏附、αvβ6 依赖性细胞内化;以及仅在表达 αvβ6 但不表达 αvβ6 的人异种移植物中选择性保留。NMR 分析证实,D25p 和 D34p 均保留了 RGD 螺旋结构,这证实了算法的成功。总之,可以基于配体结构基序来设计 scFv 文库,以增加开发强大生物治疗药物的可能性。