Chen Hong-Sen, Hou Shin-Chen, Jian Jhih-Wei, Goh King-Siang, Shen San-Tai, Lee Yu-Ching, You Jhong-Jhe, Peng Hung-Pin, Kuo Wen-Chih, Chen Shui-Tsung, Peng Ming-Chi, Wang Andrew H-J, Yu Chung-Ming, Chen Ing-Chien, Tung Chao-Ping, Chen Tzu-Han, Ping Chiu Kuo, Ma Che, Yuan Wu Chih, Lin Sheng-Wei, Yang An-Suei
Genomics Research Center, Academia Sinica, Taipei, Taiwan 115.
1] Genomics Research Center, Academia Sinica, Taipei, Taiwan 115 [2] Institute of Biomedical Informatics, National Yang-Ming University, Taipei, Taiwan 112 [3] Bioinformatics Program, Taiwan International Graduate Program, Institute of Information Science, Academia Sinica, Taipei, Taiwan 115.
Sci Rep. 2015 Jul 23;5:12411. doi: 10.1038/srep12411.
Humoral immunity against diverse pathogens is rapidly elicited from natural antibody repertoires of limited complexity. But the organizing principles underlying the antibody repertoires that facilitate this immunity are not well-understood. We used HER2 as a model immunogen and reverse-engineered murine antibody response through constructing an artificial antibody library encoded with rudimentary sequence and structural characteristics learned from high throughput sequencing of antibody variable domains. Antibodies selected in vitro from the phage-displayed synthetic antibody library bound to the model immunogen with high affinity and specificities, which reproduced the specificities of natural antibody responses. We conclude that natural antibody structural repertoires are shaped to allow functional antibodies to be encoded efficiently, within the complexity limit of an individual antibody repertoire, to bind to diverse protein antigens with high specificity and affinity. Phage-displayed synthetic antibody libraries, in conjunction with high-throughput sequencing, can thus be designed to replicate natural antibody responses and to generate novel antibodies against diverse antigens.
针对多种病原体的体液免疫可迅速从复杂性有限的天然抗体库中引发。但促进这种免疫的抗体库背后的组织原则尚未得到很好的理解。我们以HER2作为模型免疫原,并通过构建一个人工抗体库进行反向工程小鼠抗体反应,该库编码了从抗体可变域高通量测序中学到的基本序列和结构特征。从噬菌体展示的合成抗体库中体外筛选出的抗体以高亲和力和特异性结合模型免疫原,这重现了天然抗体反应的特异性。我们得出结论,天然抗体结构库的形成是为了在个体抗体库的复杂性限制内有效地编码功能性抗体,从而以高特异性和亲和力结合多种蛋白质抗原。因此,噬菌体展示的合成抗体库与高通量测序相结合,可被设计用于复制天然抗体反应并产生针对多种抗原的新型抗体。