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In Vitro Selection of Fab Fragments by mRNA Display and Gene-Linking Emulsion PCR

机译:通过mRNA显示和基因连锁乳液PCR体外选择Fab片段

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摘要

In vitro selection by display methods has been an effective tool for engineering recombinant antibodies. mRNA display based on a cell-free translation system has the advantages of larger library sizes and quicker selection procedures compared with cell-based display methods such as phage display. However, mRNA display has been limited to select single-chain polypeptides such as scFvs due to its characteristic of linking a nascent polypeptide with its encoding mRNA on the ribosome. Here we demonstrated a new way of selecting heterodimeric Fab fragments by using mRNA display combined with emulsion PCR. We designed a pair of complementary 5′ UTR sequences that can link the Fab heavy and light chain genes together by overlap-extension PCR in water-in-oil emulsions. We confirmed that two mRNA-displayed polypeptides for heavy and light chain of a model Fab fragment were associated into the active form and that a specific Fab fragment gene was enriched over 100-fold per round of a model affinity selection followed by the gene-linking emulsion PCR. We further performed directed evolution of Fab fragments with higher binding activity from a randomized Fab fragment library.
机译:通过展示方法的体外选择一直是工程化重组抗体的有效工具。与基于细胞的展示方法(例如噬菌体展示)相比,基于无细胞翻译系统的mRNA展示具有较大的文库大小和更快的选择程序。然而,由于其将新生多肽与其在核糖体上的编码mRNA相连接的特性,mRNA展示仅限于选择单链多肽,例如scFv。在这里,我们展示了一种通过使用mRNA展示与乳液PCR结合来选择异二聚Fab片段的新方法。我们设计了一对互补的5'UTR序列,可以通过油包水乳液中的重叠延伸PCR将Fab重链和轻链基因连接在一起。我们证实,模型Fab片段的重链和轻链的两个mRNA展示多肽均与活性形式相关,并且特定Fab片段基因每轮模型亲和力选择富集了100倍以上,然后进行基因连接乳液PCR。我们进一步从随机Fab片段库中进行了具有更高结合活性的Fab片段的定向进化。

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