Improvement of antibody functionality by structure-guided paratope engraftment

Broadly neutralizing antibodies (bNAbs) represent a promising alternative to antiretroviral drugs for HIV-1 prevention and treatment. Selected antibodies to the CD4-binding site bolster envelope trimer binding via quaternary contacts. Here, we rationally engraft a new paratope, i.e., the extended he...

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Veröffentlicht in:Nature communications 2019-02, Vol.10 (1), p.721-721, Article 721
Hauptverfasser: Liu, Qingbo, Lai, Yen-Ting, Zhang, Peng, Louder, Mark K., Pegu, Amarendra, Rawi, Reda, Asokan, Mangaiarkarasi, Chen, Xuejun, Shen, Chen-Hsiang, Chuang, Gwo-Yu, Yang, Eun Sung, Miao, Huiyi, Wang, Yuge, Fauci, Anthony S., Kwong, Peter D., Mascola, John R., Lusso, Paolo
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Zusammenfassung:Broadly neutralizing antibodies (bNAbs) represent a promising alternative to antiretroviral drugs for HIV-1 prevention and treatment. Selected antibodies to the CD4-binding site bolster envelope trimer binding via quaternary contacts. Here, we rationally engraft a new paratope, i.e., the extended heavy-chain framework region 3 (FR3) loop of VRC03, which mediates quaternary interaction, onto several potent bNAbs, enabling them to reach an adjacent gp120 protomer. The interactive quaternary surface is delineated by solving the crystal structure of two FR3 loop-chimeric antibodies. Chimerization enhances the neutralizing activity of several potent bNAbs against a majority of global HIV-1 strains. Compared to unmodified antibodies, chimeric antibodies display lower autoreactivity and prolonged in vivo half-life in huFcRn mice and rhesus macaques. Thus, paratope engraftment may be used to expand the epitope repertory of natural antibodies, improving their functionality for disease prevention and treatment. Quaternary contacts mediated by an extended heavy-chain framework region 3 (FR3) have been shown to improve binding to HIV envelope and virus neutralization for a few antibodies. Here, Liu et al. engraft such an FR3 loop onto several potent broadly neutralizing antibodies, resulting in improved neutralization activity and pharmacokinetics.
ISSN:2041-1723
2041-1723
DOI:10.1038/s41467-019-08658-4