首页> 外文期刊>Monoclonal antibodies in immunodiagnosis and immunotherapy >Efficient Screening and Design of Variable Domain of Heavy Chain Antibody Ligands Through High Throughput Sequencing for Affinity Chromatography to Purify Fab Fragments
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Efficient Screening and Design of Variable Domain of Heavy Chain Antibody Ligands Through High Throughput Sequencing for Affinity Chromatography to Purify Fab Fragments

机译:高通量测序通过高通量色谱法纯化Fab片段的高通量测序的高效筛选和设计重链抗体配体可变结构域

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摘要

To design an affinity ligand for purification of antigen-binding fragment (Fab) antibody, variable domain of heavy chain antibody (VHH) phage libraries were constructed from Fab-immunized Alpaca and subjected to biopanning against Fabs. To find the specific binders, we directly applied high-throughput sequencing (HTS) analysis of the VHH sequences in the panned phages on next-generation sequencer. The efficiently enriched sequences were aligned for construction of the phylogenetic tree to be categorized into five groups. VHHs from three major groups were first selected to analyze their properties as an affinity ligand. However, those VHHs were not suitable as an affinity ligand because of lack of resistance against alkaline pH and/or difficulty in acidic elution from the affinity column. So, we further searched the candidates from minor group sequences. Among five, one VHH showed the binding ability but with low affinity against Fabs. Therefore, we improved its affinity-by-affinity maturation through error-prone PCR library techniques. The final designed VHH showed highly alkaline pH resistance and easy acidic elution together with high affinity to Fabs. These results indicate that HTS techniques combined with biopanning and followed by error-prone PCR library techniques is powerful in designing specific binders with desired properties.
机译:为了设计用于纯化抗原结合片段(Fab)抗体的亲和配体,重链抗体(VHH)噬菌体文库的可变结构域由Fab-Immate的羊驼构成并对Fabs进行生物丙。为了找到特异性粘合剂,我们在下一代定序器上直接应用VHH序列的高通量测序(HTS)分析。将有效富集的序列对准,用于构建系统发育树以分为五组。首先选择来自三个主要群体的VHHS,分析其作为亲和配体的性质。然而,由于缺乏碱性pH和/或来自亲和柱的酸性洗脱的含量,那么VHHS不适合作为亲和配体。因此,我们进一步搜索了次要组序列的候选者。五,一VHH显示结合能力,但对FABS具有低亲和力。因此,我们通过易于易于PCR库技术改善了亲和逐个成熟。最终设计的VHH显示出高度碱性pH抗性和易于酸性洗脱,与FABS的高亲和力。这些结果表明,HTS技术与生物丙烯结合,然后易于出错的PCR库技术在设计具有所需性质的特异性粘合剂时是强大的。

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