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PMID: 25912958 已发表 · epublish 英语

Developing the IVIG biomimetic, hexa-Fc, for drug and vaccine applications.

Scientific reports ·第 5 卷 ·2016-02-24

Czajkowsky Daniel M, Andersen Jan Terje, Fuchs Anja, Wilson Timothy J, Mekhaiel David, Colonna Marco, He Jianfeng, Shao Zhifeng, Mitchell Daniel A, Wu Gang, Dell Anne, Haslam Stuart, Lloyd Katy A, Moore Shona C, Sandlie Inger, Blundell Patricia A, Pleass Richard J

摘要

The remarkable clinical success of Fc-fusion proteins has driven intense investigation for even more potent replacements. Using quality-by-design (QbD) approaches, we generated hexameric-Fc (hexa-Fc), a ~20 nm oligomeric Fc-based scaffold that we here show binds low-affinity inhibitory receptors (FcRL5, FcγRIIb, and DC-SIGN) with high avidity and specificity, whilst eliminating significant clinical limitations of monomeric Fc-fusions for vaccine and/or cancer therapies, in particular their poor ability to activate complement. Mass spectroscopy of hexa-Fc reveals high-mannose, low-sialic acid content, suggesting that interactions with these receptors are influenced by the mannose-containing Fc. Molecular dynamics (MD) simulations provides insight into the mechanisms of hexa-Fc interaction with these receptors and reveals an unexpected orientation of high-mannose glycans on the human Fc that provides greater accessibility to potential binding partners. Finally, we show that this biosynthetic nanoparticle can be engineered to enhance interactions with the human neonatal Fc receptor (FcRn) without loss of the oligomeric structure, a crucial modification for these molecules in therapy and/or vaccine strategies where a long plasma half-life is critical.

文献信息
期刊
Scientific reports
期刊简称
Sci Rep
发表日期
2016-02-24
收录日期
2015-04-28
更新日期
2016-11-22
语言
英语
国家/地区
England
NLM ID
101563288
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