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首页> 外文期刊>Biotechnology Progress >Identification and Repair of Positive Binding Antibodies Containing Randomly Generated Amber Codons from Synthetic Phage Display Libraries
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Identification and Repair of Positive Binding Antibodies Containing Randomly Generated Amber Codons from Synthetic Phage Display Libraries

机译:从合成噬菌体展示文库鉴定和修复包含随机生成的琥珀密码子的阳性结合抗体

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摘要

Phage display technology allows for the rapid isolation and characterization of monoclonal antibodies that have vast potential for therapeutic and diagnostic applications.However,the panning process,which utilizes a host strain that suppresses termination by the amber codon,has an inherent bias toward clones containing randomly generated amber stop codons,complicating identification of positive binding antibodies when the antibody genes are finally expressed in a nonsupressor host.Here,we perform biopanning against a Histone 2A peptide using streptavidin-or anti-biotin-coated beads.After four rounds,a dominant clone is characterized but contains a spurious amber stop codon.A protocol is given that readily corrects the amber codon,allowing for soluble antibody production once the phagemid is transformed into a nonsuppressor bacterial strain.This work also highlights the ability to isolate antibodies against a protein antigen by using only a small peptide (15 amino acids)representing a portion of the antigen.
机译:噬菌体展示技术可快速分离和鉴定在治疗和诊断应用中具有巨大潜力的单克隆抗体。但是,淘选过程利用宿主菌株抑制琥珀色密码子的终止,其固有的偏向于随机包含产生琥珀色终止密码子,当最终在非抑制宿主中表达抗体基因时,使阳性结合抗体的鉴定复杂化。在这里,我们使用抗生蛋白链菌素或抗生物素包被的珠子对组蛋白2A肽进行生物淘选。四轮后,显性该克隆具有特征性特征,但包含一个伪造的琥珀色终止密码子。给出的协议可轻松纠正琥珀色密码子,一旦噬菌粒转化为非抑制性细菌菌株后即可产生可溶性抗体。该工作还强调了分离针对蛋白质的抗体的能力。抗原仅使用代表ap的小肽(15个氨基酸)抗原的排列。

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