National Natural Science Foundation of China (Nos. 30872405, 30872246, 30972632, 30972799), Shanghai Committee of Science and Technology (No. 08JC1405200), Chinese National Key Special Project for the Prevention and Control of Major Infectious Diseases (No. 2009ZX10004-105), Chinese National Key Special Project for Major New Drug Discovery (No. 2011ZX09506-001).
Protein A and protein G are two well-defined immunoglobulin (Ig)-binding proteins (IBPs), which show affinity for specific sites on Ig of mammalian hosts. Protein A and protein G contained several highly homologous IgG-binding domains which had been demonstrated to have function to bind to IgG. Whether combinations of Ig-binding domains of various IBPs could produce useful novel binding properties remains interesting. We constructed a combinatorial phage library which displayed randomly-rearranged A, B, C, D and E domains of protein A, B2 and B3 domains of protein G. Four rounds molecular evolution of this library directed by all four human IgG subclasses respectively generated a common arrangement of D-C respectively which didn’t exist in SpA. The dynamic loss of control phages and increase of the phages displaying two or more binding domains, especially the selective enrichment of D-C and strict selection of its linking peptides demonstrated the efficient molecular evolutions and the significance of the selected D-C arrangement. The phage binding assays confirmed that D-C possessed a binding advantage with four human IgG subclasses compared to SpA. In this work, a novel combination of Ig-binding domains, D-C, was obtained and presented the novel Ig binding properties which provided a novel candidate molecule for the purification, production and detection of IgG antibodies and a new approach for the further study of structures and functions of IBPs.
祁培培,丁莹莹,吴莉莉,陈秋莉,王锦红,刘超,廖文婷,张婧,曹洁,潘卫. 人IgG四亚类对噬菌体展示Ig结合蛋白单结构域随机组合文库的体外进化筛选[J]. Chinese Journal of Biotechnology, 2012, 28(9): 1093-1105
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