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通过顺序反向抗原流式细胞术快速筛选抗体文库的酵母表面展示平台。

Yeast Surface Display Platform for Rapid Selection of an Antibody Library via Sequential Counter Antigen Flow Cytometry.

作者信息

Ban Bhupal, Blake Robert C, Blake Diane A

机构信息

Department of Biochemistry and Molecular Biology, Tulane University School of Medicine, New Orleans, LA 70112, USA.

Division of Basic Pharmaceutical Sciences, Xavier University of Louisiana, New Orleans, LA 70125, USA.

出版信息

Antibodies (Basel). 2022 Sep 27;11(4):61. doi: 10.3390/antib11040061.

Abstract

Yeast surface display techniques have been increasingly employed as a tool for both the discovery and affinity maturation of antibodies. In this study, we describe the use of yeast surface display for the selection and affinity maturation of antibodies targeted to small molecules (haptens). In this approach, we coupled 4 to 15 sequential cycles of error-prone PCR to introduce heterogeneity into the sequence of an 12F6 scFv antibody that binds to chelated uranium; the resulting full-length constructs were combined to create a yeast-displayed scFv-library with high diversity. We also developed a stringent selection technique utilizing fluorescence-activated cell sorting; this was based on sequentially dropping the target antigen concentration, while concomitantly increasing the concentration of potential cross-reactive haptens in subsequent selection cycles. As a proof of the efficacy this approach, we confirmed that the antibodies identified via this approach retained binding to the target antigen (UO complexed to a chelator), while binding with lesser affinity than the parental scFv to a structurally related haptens (the same chelator complexed to other metal ions). As will be described in this report, these scFv variants perform more efficiently in sensor-based assay than the parental 12F6 antibody. Combining the generation of scFv libraries via error-prone PCR with selection of yeast-displayed antibodies by fluorescence activated cell sorting will provide an efficient new method for the isolation of scFvs and other binding proteins with high affinity and specificity.

摘要

酵母表面展示技术已越来越多地被用作抗体发现和亲和力成熟的工具。在本研究中,我们描述了利用酵母表面展示来筛选和成熟针对小分子(半抗原)的抗体。在这种方法中,我们将4到15个易错PCR连续循环相结合,以在与螯合铀结合的12F6单链抗体(scFv)序列中引入异质性;将得到的全长构建体组合起来,创建一个具有高度多样性的酵母展示scFv文库。我们还开发了一种利用荧光激活细胞分选的严格筛选技术;该技术基于在后续筛选循环中依次降低靶抗原浓度,同时增加潜在交叉反应性半抗原的浓度。作为该方法有效性的证明,我们证实通过这种方法鉴定的抗体保留了与靶抗原(与螯合剂络合的UO)的结合,而与结构相关半抗原(与其他金属离子络合的相同螯合剂)的结合亲和力低于亲本scFv。如本报告所述,这些scFv变体在基于传感器的测定中比亲本12F6抗体表现得更高效。将通过易错PCR产生scFv文库与通过荧光激活细胞分选筛选酵母展示抗体相结合,将为分离具有高亲和力和特异性的scFv及其他结合蛋白提供一种高效的新方法。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/21f3/9590018/cbf35db14126/antibodies-11-00061-g001.jpg

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