化学
肽
脂质双层融合
血凝素(流感)
单域抗体
甲型流感病毒
抗体
病毒
V3环
体外
生物化学
生物物理学
肽序列
模板
病毒学
循环(图论)
立体化学
融合
赖氨酸
结构-活动关系
蛋白质结构
正粘病毒科
细胞生物学
肽合成
分子模拟
计算生物学
血浆蛋白结合
结合位点
膜
融合蛋白
组合化学
折叠(DSP实现)
贪婪
生物
免疫原性
作者
Rameshwar U. Kadam,Jarek Juraszek,Boerries Brandenburg,Divita Garg,Xueyong Zhu,Mandy Jongeneelen,Wim Schepens,Bart Stoops,Jan Vermond,Wouter Goutier,Chan Tang,Sven Blokland,Ronald Vogels,Robert H. Friesen,Maria J. P. van Dongen,Ian A. Wilson
标识
DOI:10.1038/s44298-025-00166-1
摘要
Miniaturizing biologically complex structural motifs to produce synthetic functional mimetics holds significant promise for development of new therapeutic modalities. Here, we demonstrate a unique approach using the key binding loop of the single variable domain of a heavy chain (VHH) llama antibody as a starting point for peptide design. VHH antibodies of camelids and sharks generally have longer, but more ligand-efficient complementarity determining region 3 (CDR3) loops and are relatively stable structures. We harnessed these attributes as templates for design of a series of synthetic macrocyclic peptides. The designed peptides exhibit nanomolar binding to influenza hemagglutinin (HA) and heterosubtypic in vitro neutralization breadth against influenza A viruses by inhibiting the low pH mediated HA conformational changes that lead to membrane fusion. X-ray structures of peptide-HA complexes reveal high structural mimicry with the parent VHH antibody. One such macrocycle peptide candidate is promising for further development of broad protection against influenza A group 1 viruses.
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