一种新的抗bont /A中和抗体具有与SV2重叠的表位,并且在体内具有较长的半衰期。

IF 4 3区 医学 Q2 FOOD SCIENCE & TECHNOLOGY
Toxins Pub Date : 2025-07-29 DOI:10.3390/toxins17080376
Shangde Peng, Naijing Hu, Fenghao Peng, Huirong Mu, Zihan Yi, Cong Xing, Liang Zhang, Wen Hu, Xinyi Zhou, Yan Wen, Jiannan Feng, Chunxia Qiao
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引用次数: 0

摘要

BoNT/A重链(BoNT/AHC)的c端介导其与受体SV2的结合,这是毒性的关键步骤。抗体抑制这种相互作用可提高神经元的存活率。我们之前发现了一个功能性抗bont /AHC纳米体HM。为了延长其体内半衰期,我们设计并制备了两种优化fc的纳米颗粒HM-Fc5和HM-Fc6。HM Fv-AHC复合物的结构建模(同源性/对接)预测HM参与了AHC关键残基(Tyr1155、Phe1160、Ile1161、Val1184、Asn1188、Lys1189、Glu1190),这些残基与SV2结合位点重叠。这表明HM的保护机制包括阻断毒素受体结合和细胞进入。HM- fc5和HM- fc6保留了亲本HM抗体的稳定性和功能,但表现出较长的体内半衰期。这些优化的纳米体提供了经济的候选药物,有可能延长给药间隔,有利于预防或慢性疾病治疗。意义声明:本研究的目的是设计并制备两种Fc优化的纳米颗粒HM-Fc5和HM-Fc6,并预测HM-Fc6与AHC相互作用中涉及的关键残基。实验结果表明,HM- fc5和HM- fc6具有与母体HM抗体相同的稳定性,但在体内的半衰期更长。关键残基Tyr1155、Phe1160、Ile1161、Val1184、Asn1188、Lys1189和Glu1190与SV2结合位点重叠。实验结果表明,这些候选纳米体不仅更经济、更方便,而且可能具有更长的给药间隔,为延长纳米材料的体内半衰期提供了有力的证据和参考。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
A Novel Anti-BoNT/A Neutralizing Antibody Possessed Overlapped Epitope with SV2 and Had Prolonged Half-Life In Vivo.

The C-terminus of the BoNT/A heavy chain (BoNT/AHC) mediates binding to its receptor, SV2, a critical step for toxicity. Antibody inhibition of this interaction enhances neuronal survival. We previously identified a functional anti-BoNT/AHC nanobody, HM. To extend its in vivo half-life, we designed and prepared two Fc-optimized nanoparticles, HM-Fc5 and HM-Fc6. Structural modeling (homology/docking) of the HM Fv-AHC complex predicted that HM engages key AHC residues (Tyr1155, Phe1160, Ile1161, Val1184, Asn1188, Lys1189, Glu1190), which overlap with the SV2 binding site. This suggests HM's protective mechanism involves blocking toxin-receptor binding and cellular entry. HM-Fc5 and HM-Fc6 retained the stability and function of the parental HM antibody while exhibiting prolonged in vivo half-life. These optimized nanobodies offer economical candidates potentially enabling longer dosing intervals, beneficial for prophylaxis or chronic disease treatment. Significance Statement: The purpose of the study is to design and prepare two Fc optimized nanoparticles, HM-Fc5 and HM-Fc6, and predict the key residues involved in the interaction between HMs and AHC. The experimental results showed that HM-Fc5 and HM-Fc6 have the same stability as the parent HM antibody but have a longer half-life in vivo. The key residues Tyr1155, Phe1160, Ile1161, Val1184, Asn1188, Lys1189, and Glu1190 overlap with the SV2 binding site. Our experimental results indicate that these nanobody candidates are not only more economical and convenient, but may also have longer dosing intervals, providing strong evidence and reference for prolonging the in vivo half-life of nanomaterials.

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来源期刊
Toxins
Toxins TOXICOLOGY-
CiteScore
7.50
自引率
16.70%
发文量
765
审稿时长
16.24 days
期刊介绍: Toxins (ISSN 2072-6651) is an international, peer-reviewed open access journal which provides an advanced forum for studies related to toxins and toxinology. It publishes reviews, regular research papers and short communications. Our aim is to encourage scientists to publish their experimental and theoretical results in as much detail as possible. There is no restriction on the length of the papers. The full experimental details must be provided so that the results can be reproduced.
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