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全面的肽环化检测产生了对Mint2具有更高亲和力的优化APP支架。

Comprehensive Peptide Cyclization Examination Yields Optimized APP Scaffolds with Improved Affinity toward Mint2.

作者信息

Bartling Christian R O, Alexopoulou Flora, Kuschert Sarah, Chin Yanni K-Y, Jia Xinying, Sereikaite Vita, Özcelik Dennis, Jensen Thomas M, Jain Palash, Nygaard Mads M, Harpsøe Kasper, Gloriam David E, Mobli Mehdi, Strømgaard Kristian

机构信息

Department of Drug Design and Pharmacology, University of Copenhagen, Universitetsparken 2, 2100Copenhagen, Denmark.

Center for Advanced Imaging, University of Queensland, St. Lucia, 4072Queensland, Australia.

出版信息

J Med Chem. 2023 Feb 23;66(4):3045-3057. doi: 10.1021/acs.jmedchem.2c02017. Epub 2023 Feb 7.

Abstract

Peptides targeting disease-relevant protein-protein interactions are an attractive class of therapeutics covering the otherwise undruggable space between small molecules and therapeutic proteins. However, peptides generally suffer from poor metabolic stability and low membrane permeability. Hence, peptide cyclization has become a valuable approach to develop linear peptide motifs into metabolically stable and potentially cell-permeable cyclic leads. Furthermore, cyclization of side chains, also known as "stapling", can stabilize particular secondary peptide structures. Here, we demonstrate that a comprehensive examination of cyclization strategies in terms of position, chemistry, and length is a prerequisite for the selection of optimal cyclic peptide scaffolds. Our systematic approach identifies cyclic APP dodecamer peptides targeting the phosphotyrosine binding domain of Mint2 with substantially improved affinity. We show that especially all-hydrocarbon stapling provides improved metabolic stability, a significantly stabilized secondary structure and membrane permeability.

摘要

靶向疾病相关蛋白质-蛋白质相互作用的肽是一类有吸引力的治疗剂,可覆盖小分子和治疗性蛋白质之间原本难以成药的空间。然而,肽通常具有代谢稳定性差和膜通透性低的问题。因此,肽环化已成为将线性肽基序发展为代谢稳定且可能具有细胞通透性的环状先导物的一种有价值的方法。此外,侧链环化,也称为“钉合”,可以稳定特定的二级肽结构。在此,我们证明,从位置、化学和长度方面对环化策略进行全面研究是选择最佳环状肽支架的先决条件。我们的系统方法鉴定出靶向Mint2磷酸酪氨酸结合结构域的环状APP十二聚体肽,其亲和力显著提高。我们表明,特别是全碳氢化合物钉合可提高代谢稳定性、显著稳定二级结构并提高膜通透性。

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