Qin Li, Zhaode Mu, Yuhan Dong, Zubin Ouyang, Jianli Zuo, Yijie Wu, Yuxuan Yang, Si Sun, Prof. Hongwen Liang, Prof. Lijuan Bai
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引用次数: 0
摘要
优化多肽在体内的稳定性和亲和力对于它们作为已批准的单克隆抗体的替代品的发展至关重要。近年来,学术界和工业界都致力于对Pep2-8进行修饰,以提高其特异性和亲和力。Pep2-8是一种经典的靶向蛋白转化酶subtilisin/ keexin type 9 (PCSK9)的拮抗肽。然而,开发有效的PCSK9抑制肽仍然具有挑战性,特别是考虑到它们在体内成功应用的例子有限。在此,我们基于Pep2-8的模块化结构设计了针对PCSK9的转化抑制肽(TIP)。在遇到PCSK9后,TIP在PCSK9的表皮生长因子样结构域A (EGF-A)结合区域进行原位自组装,形成人工拓扑纳米结构(atn)。atn不仅能增强肽的稳定性,延长体内滞留时间,还能通过多价协同作用加强PCSK9的结合。我们证明,与Pep2-8相比,TIP形成ATNs,其对PCSK9的结合亲和力提高了约18.7倍。在高脂饮食小鼠模型中,TIP显著提高肝脏LDLR水平(2.0倍),降低LDL-C和TC水平。我们设想,肽在原位形成atn可以增强体内稳定性和亲和力,这为临床抗体替代品的开发提供了一种方法。
In Situ Self-Assembly of Artificial Topological Nanostructures Enhances In Vivo Efficacy of PCSK9 Inhibitory Peptides
Optimizing the stability and affinity of peptides in vivo is critical for their development as alternatives to approved monoclonal antibodies. In recent years, efforts in academia and industry have focused on modifying Pep2-8, a classical antagonistic peptide targeting proprotein convertase subtilisin/kexin type 9 (PCSK9), to enhance its specificity and affinity. However, developing effective PCSK9 inhibitory peptides remains challenging, especially given the limited examples of their successful in vivo applications. Here, we designed transformable inhibitory peptide (TIP) against PCSK9 based on the modular structure of Pep2-8. Upon encountering PCSK9, TIP undergoes in situ self-assembly at the epidermal growth factor-like domain A (EGF-A) binding domain of PCSK9 to form artificial topological nanostructures (ATNs). The ATNs not only enhance peptide stability and prolong in vivo retention time but also strengthen PCSK9 binding through multivalent synergistic effects. We demonstrate that compared to Pep2-8, TIP forms ATNs which increasing its binding affinity for PCSK9 by approximately 18.7-fold in vitro. In high-fat diet mouse models, TIP significantly increase hepatic LDLR levels (2.0-fold) and reduced LDL-C and TC levels. We envision that the in situ formation of ATNs by peptides enhances in vivo stability and affinity, which offering an approach for development as antibody alternatives in clinical.
期刊介绍:
Angewandte Chemie, a journal of the German Chemical Society (GDCh), maintains a leading position among scholarly journals in general chemistry with an impressive Impact Factor of 16.6 (2022 Journal Citation Reports, Clarivate, 2023). Published weekly in a reader-friendly format, it features new articles almost every day. Established in 1887, Angewandte Chemie is a prominent chemistry journal, offering a dynamic blend of Review-type articles, Highlights, Communications, and Research Articles on a weekly basis, making it unique in the field.