互补决定区
噬菌体展示
计算生物学
突变
移码突变
表位
肽库
互补性(分子生物学)
氨基酸
基因组文库
生物
遗传学
抗体
组合化学
肽序列
突变
化学
基因
作者
Minju Kim,Xuelian Bai,Hyewon Im,Jisoo Yang,Youngju Kim,Minjoo MJ Kim,Yeonji Oh,Yuna Jeon,Hayoung Kwon,Seunghyun Lee,Chang‐Han Lee
出处
期刊:The Korean Journal of Physiology and Pharmacology
[The Korean Physiological Society and The Korean Society of Pharmacology]
日期:2024-08-29
卷期号:28 (5): 457-467
被引量:2
标识
DOI:10.4196/kjpp.2024.28.5.457
摘要
Nanobodies derived from camelids and sharks offer unique advantages in therapeutic applications due to their ability to bind to epitopes that were previously inaccessible. Traditional methods of nanobody development face challenges such as ethical concerns and antigen toxicity. Our study presents a synthetic, phagedisplayed nanobody library using trinucleotide-directed mutagenesis technology, which allows precise amino acid composition in complementarity-determining regions (CDRs), with a focus on CDR3 diversity. This approach avoids common problems such as frameshift mutations and stop codon insertions associated with other synthetic antibody library construction methods. By analyzing FDA-approved nanobodies and Protein Data Bank sequences, we designed sub-libraries with different CDR3 lengths and introduced amino acid substitutions to improve solubility. The validation of our library through the successful isolation of nanobodies against targets such as PD-1, ATXN1 and STAT3 demonstrates a versatile and ethical platform for the development of high specificity and affinity nanobodies and represents a significant advance in biotechnology.
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