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Structure Based Design of Protein Ligands: A Study of Antibody-like Scaffolds Targeted Against the Anthrax Toxin

机译:基于结构的蛋白质配体设计:靶向抗蒽毒素的抗体样支架的研究

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We have adopted structure-based approaches to enhance the affinities of two single chain antibodies, scFv1 and scFv4, that bind to two different epitopes on the Protective Antigen (PA), a toxin from Bacillus anthracis. In one approach, we have modified scFv4 and re-engineered a novel antibody-like scaffold in which we have placed V_L on the N terminus and V_H on the C-terminus and joined them by a 10 amino-acid-long linker. This scaffold preserves the native V_L-V_H contact interface and the dispositions of the CDR loops. It binds to PA with 10 fold higher affinity than scFv4. In a second approach, we have created a bispecific ligand by covalently joining scFv1 and scFv4 by a flexible linker that supports simultaneous and synergistic binding of the two scFvs to PA. This bispecific scFv1-linker-scFv4 binds to PA with 10 fold higher affinity than the individual scFvs. The newly re-engineered antibody-like scaffold of scFv4 and scFv1-linker-scFv4 are expected to be potent inhibitors of PA binding to the host cells.
机译:我们采用基于结构的方法来增强两种单链抗体,SCFV1和SCFV4的亲和力,其与保护抗原(PA)的两种不同表位联系,来自杆菌的毒素。在一种方法中,我们已经修改了SCFv4并重新设计了一种新型抗体样支架,其中我们在C-末端的N末端和V_H上置于N末端和V_H上并通过10氨基酸长连接器连接它们。该脚手架保留了本机V_L-V_H触点界面和CDR环路的配置。它与PA绑定,亲和力高10倍,比SCFv4更高。在第二种方法中,通过通过柔性接头共价连接SCFv1和SCFV4,通过支持两个SCFV与PA的同时和协同结合来创造了双特异性配体。这种双特异性SCV1-LINKER-SCV4与PA绑定,亲亲和性的10倍比各个SCVS更高。新重新设计的SCFV4和SCFV1-LINKAL-SCFV4的抗体状支架预计将是PA与宿主细胞结合的有效抑制剂。

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