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金标装配与双向启动子(GBid):一种简单、可扩展的噬菌体展示 Fab 文库构建方法。

Golden Gate assembly with a bi-directional promoter (GBid): A simple, scalable method for phage display Fab library creation.

机构信息

Department of Microbial Pathogenesis and Immunology, Texas A&M University Health Science Center, College Station, Texas, 77843, USA.

Biosion, Inc., Nanjing, 210061, China.

出版信息

Sci Rep. 2020 Feb 19;10(1):2888. doi: 10.1038/s41598-020-59745-2.

Abstract

Fabs offer an attractive platform for monoclonal antibody discovery/engineering, but library construction can be cumbersome. We report a simple method - Golden Gate assembly with a bi-directional promoter (GBid) - for constructing phage display Fab libraries. In GBid, the constant domains of the Fabs are located in the backbone of the phagemid vector and the library insert comprises only the variable regions of the antibodies and a central bi-directional promoter. This vector design reduces the process of Fab library construction to "scFv-like" simplicity and the double promoter ensures robust expression of both constituent chains. To maximize the library size, the 3 fragments comprising the insert - two variable chains and one bi-directional promoter - are assembled via a 3-fragment overlap extension PCR and the insert is incorporated into the vector via a high-efficiency one-fragment, one-pot Golden Gate assembly. The reaction setup requires minimal preparatory work and enzyme quantities, making GBid highly scalable. Using GBid, we constructed a chimeric chicken-human Fab phage display library comprising 10 variants targeting the multi-transmembrane protein human CD20 (hCD20). Selection/counter-selection on transfected whole cells yielded hCD20-specific antibodies in four rounds of panning. The simplicity and scalability of GBid makes it a powerful tool for the discovery/engineering of Fabs and IgGs.

摘要

Fabs 为单克隆抗体的发现/工程提供了一个有吸引力的平台,但文库的构建可能很繁琐。我们报告了一种简单的方法 - Golden Gate 组装带有双向启动子(GBid)- 用于构建噬菌体展示 Fab 文库。在 GBid 中,Fab 的恒定区位于噬菌体载体的骨架中,文库插入物仅包含抗体的可变区和中央双向启动子。这种载体设计将 Fab 文库的构建过程简化为“scFv 样”的简单性,并且双启动子确保了两条链的稳健表达。为了最大限度地增加文库的大小,插入物的 3 个片段 - 两个可变链和一个双向启动子 - 通过 3 个片段重叠延伸 PCR 进行组装,并且插入物通过高效的 1 个片段、1 个管 Golden Gate 组装并入载体。反应设置需要最少的预备工作和酶量,使 GBid 具有高度可扩展性。使用 GBid,我们构建了一个包含 10 种针对多跨膜蛋白人 CD20(hCD20)的嵌合鸡-人 Fab 噬菌体展示文库。在转染的整个细胞上进行选择/反选择,在四轮淘选中得到了 hCD20 特异性抗体。GBid 的简单性和可扩展性使其成为发现/工程 Fab 和 IgG 的强大工具。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/ef57/7031318/faea80fbb867/41598_2020_59745_Fig1_HTML.jpg

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