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从噬菌体展示文库中筛选的人抗体框架的特异性嫁接:产生高度稳定的人源化抗CD22单链Fv片段。

Specificity grafting of human antibody frameworks selected from a phage display library: generation of a highly stable humanized anti-CD22 single-chain Fv fragment.

作者信息

Krauss Jürgen, Arndt Michaela A E, Martin Andrew C R, Liu Huaitian, Rybak Susanna M

机构信息

National Cancer Institute at Frederick, Frederick, MD 21702, USA.

出版信息

Protein Eng. 2003 Oct;16(10):753-9. doi: 10.1093/protein/gzg096.

Abstract

A prerequisite for the enrichment of antibodies screened from phage display libraries is their stable expression on a phage during multiple selection rounds. Thus, if stringent panning procedures are employed, selection is simultaneously driven by antigen affinity, stability and solubility. To take advantage of robust pre-selected scaffolds of such molecules, we grafted single-chain Fv (scFv) antibodies, previously isolated from a human phage display library after multiple rounds of in vitro panning on tumor cells, with the specificity of the clinically established murine monoclonal anti-CD22 antibody RFB4. We show that a panel of grafted scFvs retained the specificity of the murine monoclonal antibody, bound to the target antigen with high affinity (6.4-9.6 nM), and exhibited exceptional biophysical stability with retention of 89-93% of the initial binding activity after 6 days of incubation in human serum at 37 degrees C. Selection of stable human scaffolds with high sequence identity to both the human germline and the rodent frameworks required only a small number of murine residues to be retained within the human frameworks in order to maintain the structural integrity of the antigen binding site. We expect this approach may be applicable for the rapid generation of highly stable humanized antibodies with low immunogenic potential.

摘要

从噬菌体展示文库中筛选出的抗体得以富集的一个前提条件是它们在多个筛选轮次中能在噬菌体上稳定表达。因此,如果采用严格的淘选程序,筛选过程会同时受到抗原亲和力、稳定性和溶解性的驱动。为了利用此类分子强大的预筛选支架,我们将单链Fv(scFv)抗体进行了嫁接,这些scFv抗体是先前经过多轮体外在肿瘤细胞上淘选后从人噬菌体展示文库中分离得到的,具有临床已确立的鼠源单克隆抗CD22抗体RFB4的特异性。我们发现,一组嫁接的scFv保留了鼠源单克隆抗体的特异性,以高亲和力(6.4 - 9.6 nM)结合靶抗原,并且在37℃的人血清中孵育6天后,表现出卓越的生物物理稳定性,初始结合活性保留了89 - 93%。选择与人类种系和啮齿动物框架具有高序列同一性的稳定人类支架,仅需在人类框架内保留少量鼠源残基,就能维持抗原结合位点的结构完整性。我们预计这种方法可能适用于快速生成具有低免疫原性潜力的高度稳定的人源化抗体。

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