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Engineering of anti-human interleukin-4 receptor alpha antibodies with potent antagonistic activityoa mark
  • Kim, Jung Eun ;
  • Jung, Keunok ;
  • Kim, Jeong Ah ;
  • Kim, Seung Hyun ;
  • Park, Hae Sim ;
  • Kim, Yong Sung
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Publication Year
2019-12-01
Publisher
Nature Publishing Group
Citation
Scientific Reports, Vol.9
Mesh Keyword
AdultAntibodies, Monoclonal, HumanizedAsthmaHumansInterleukin-4 Receptor alpha SubunitLeukocytes, Mononuclear
All Science Classification Codes (ASJC)
Multidisciplinary
Abstract
Development of antagonistic antibody (Ab) against interleukin-4 receptor alpha (IL-4Rα) subunit of IL-4/IL-13 receptors is a promising therapeutic strategy for T helper 2 (TH2)-mediated allergic diseases such as asthma and atopic dermatitis. Here we isolated anti-human IL-4Rα antagonistic Abs from a large yeast surface-displayed human Ab library and further engineered their complementarity-determining regions to improve the affinity using yeast display technology, finally generating a candidate Ab, 4R34.1.19. When reformatted as human IgG1 form, 4R34.1.19 specifically bound to IL-4Rα with a high affinity (KD ≈ 178 pM) and effectively blocked IL-4- and IL-13-dependent signaling in a reporter cell system at a comparable level to that of the clinically approved anti-IL-4Rα dupilumab Ab analogue. Epitope mapping by alanine scanning mutagenesis revealed that 4R34.1.19 mainly bound to IL-4 binding sites on IL-4Rα with different epitopes from those of dupilumab analogue. Further, 4R34.1.19 efficiently inhibited IL-4-dependent proliferation of T cells among human peripheral blood mononuclear cells and suppressed the differentiation of naïve CD4+ T cells from healthy donors and asthmatic patients into TH2 cells, the activities of which were comparable to those of dupilumab analogue. Our work demonstrates that both affinity and epitope are critical factors for the efficacy of anti-IL-4Rα antagonistic Abs.
ISSN
2045-2322
Language
eng
URI
https://dspace.ajou.ac.kr/dev/handle/2018.oak/30747
DOI
https://doi.org/10.1038/s41598-019-44253-9
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Type
Article
Funding
This work was supported by the Korea Health Technology R&D Project (HI16C0992 to Y.S.K.) funded by the Korea Health Industry Development Institute (KHIDI) and the National Research Foundation (NRF) Grant (2014M3C1A3051470 to Y.S.K.) funded by the Ministry of Science, ICT & Future Planning, Republic of Korea.
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Kim, Yong Sung김용성
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