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Engineering Anti-vascular Endothelial Growth Factor Single Chain Disulfide-stabilized Antibody Variable Fragments (sc-dsFv) with Phage-displayed sc-dsFv Libraries*

机译:带有噬菌体展示的sc-dsFv库的工程抗血管内皮生长因子单链二硫键稳定的抗体可变片段(sc-dsFv)*

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摘要

Phage display of antibody fragments from natural or synthetic antibody libraries with the single chain constructs combining the variable fragments (scFv) has been one of the most prominent technologies in antibody engineering. However, the nature of the artificial single chain constructs results in unstable proteins expressed on the phage surface or as soluble proteins secreted in the bacterial culture medium. The stability of the variable domain structures can be enhanced with interdomain disulfide bond, but the single chain disulfide-stabilized constructs (sc-dsFv) have yet to be established as a feasible format for bacterial phage display due to diminishing expression levels on the phage surface in known phage display systems. In this work, biological combinatorial searches were used to establish that the c-region of the signal sequence is critically responsible for effective expression and functional folding of the sc-dsFv on the phage surface. The optimum signal sequences increase the expression of functional sc-dsFv by 2 orders of magnitude compared with wild-type signal sequences, enabling the construction of phage-displayed synthetic antivascular endothelial growth factor sc-dsFv libraries. Comparison of the scFv and sc-dsFv variants selected from the phage-displayed libraries for vascular endothelial growth factor binding revealed the sequence preference differences resulting from the interdomain disulfide bond. These results underlie a new phage display format for antibody fragments with all the benefits from the scFv format but without the downside due to the instability of the dimeric interface in scFv.
机译:来自天然或合成抗体库的抗体片段的噬菌体展示以及结合可变片段(scFv)的单链构建体已成为抗体工程领域最重要的技术之一。然而,人工单链构建体的性质导致在噬菌体表面表达的不稳定蛋白质或在细菌培养基中分泌的可溶性蛋白质。域间二硫键可增强可变域结构的稳定性,但由于噬菌体表面表达水平的降低,单链二硫键稳定的构建体(sc-dsFv)尚未被确立为细菌噬菌体展示的可行形式。在已知的噬菌体展示系统中。在这项工作中,生物学组合搜索被用来确定信号序列的c区域对噬菌体表面上sc-dsFv的有效表达和功能折叠至关重要。与野生型信号序列相比,最佳信号序列将功能性sc-dsFv的表达提高了2个数量级,从而能够构建噬菌体展示的合成抗血管内皮生长因子sc-dsFv文库。从噬菌体展示的文库中选择的scFv和sc-dsFv变体进行血管内皮生长因子结合的比较表明,域间二硫键导致的序列偏好差异。这些结果奠定了抗体片段新的噬菌体展示格式的基础,具有scFv格式的所有优势,但由于scFv中二聚体界面的不稳定性而没有不利的一面。

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