Preferential germline usage and VH/VL pairing observed in human antibodies selected by mRNA display

噬菌体展示 生殖系 抗体 信使核糖核酸 生物 计算生物学 贪婪 遗传学 分子生物学 基因
作者
Lei Chen,Yuliya Kutskova,Hong Feng,John Memmott,Suju Zhong,Megan D. Jenkinson,Chung-Ming Hsieh
出处
期刊:Protein Engineering Design & Selection [Oxford University Press]
卷期号:28 (10): 427-435 被引量:6
标识
DOI:10.1093/protein/gzv042
摘要

Since the invention of phage display, in vitro antibody display technologies have revolutionized the field of antibody discovery. In combination with antibody libraries constructed with sequences of human origin, such technologies enable accelerated therapeutic antibody discovery while bypassing the laborious animal immunization and hybridoma generation processes. Many in vitro display technologies developed since aim to differentiate from phage display by displaying full-length IgG proteins, utilizing eukaryotic translation system and codons, increasing library size or real-time kinetic selection by fluorescent activated cell sorting. We report here the development of an mRNA display technology and an accompanying HCDR3 size spectratyping monitor for human antibody discovery. Importantly, the mRNA display technology maintains a monovalent linkage between the mRNA (genotype) and display binding protein (phenotype), which minimizes avidity effect common in other display systems and allows for a stringent affinity and off-rate selection. The mRNA display technology successfully identified 100 human antibodies in 15 different selections against various targets from naïve human antibody libraries. These antibodies in general have high affinity and diversity. By analyzing the germline usage and combination of antibodies selected by the mRNA display technology, we identified trends and determined the productivity of each germline subgroup in the libraries that could serve as the knowledge base for constructing fully synthetic, next generation antibody libraries.
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