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一种通用的方法,用于非经典、动态共价的单环和多环肽大环化合物,以增强抗菌活性。

A Versatile Approach to Noncanonical, Dynamic Covalent Single- and Multi-Loop Peptide Macrocycles for Enhancing Antimicrobial Activity.

机构信息

Department of Chemistry , University of Texas at Austin , Austin , Texas 78712 , United States.

LaMontange Center for Infectious Diseases, Department of Molecular Biosciences , University of Texas at Austin , Austin , Texas 78712 , United States.

出版信息

J Am Chem Soc. 2018 Mar 14;140(10):3768-3774. doi: 10.1021/jacs.8b00046. Epub 2018 Mar 1.

Abstract

Peptide oligomers offer versatile scaffolds for the formation of potent antimicrobial agents due to their high sequence versatility, inherent biocompatibility, and chemical tunability. Though many methods exist for the formation of peptide-based macrocycles (MCs), increasingly pervasive in commercial antimicrobial therapeutics, the introduction of multiple looped structures into a single peptide oligomer remains a significant challenge. Herein, we report the utilization of dynamic hydrazone condensation for the versatile formation of single-, double-, and triple-loop peptide MCs using simple dialdehyde or dihydrazide small-molecule cross-linkers, as confirmed by MALDI-TOF MS, HPLC, and SDS-PAGE. Furthermore, incorporation of aldehyde-containing side chains onto peptides synthesized from hydrazide C-terminal resins resulted in tunable peptide MC assemblies formed directly upon resin cleavage post solid-phase peptide synthesis. Both of these types of dynamic covalent assemblies produced significant enhancements to overall antimicrobial properties when introduced into a known antimicrobial peptide, buforin II, when compared to the original unassembled sequence.

摘要

肽寡聚体因其高序列多样性、固有生物相容性和化学可调节性,为形成强效抗菌剂提供了多功能支架。尽管有许多方法可用于形成基于肽的大环(MC),这些大环在商业抗菌治疗中越来越普遍,但在单个肽寡聚体中引入多个环结构仍然是一个重大挑战。在此,我们报告了利用动态腙缩合反应,通过简单的二醛或二酰肼小分子交联剂,灵活地形成单环、双环和三环肽 MC,这通过 MALDI-TOF MS、HPLC 和 SDS-PAGE 得到了证实。此外,在通过酰肼 C 末端树脂合成的肽中引入含醛侧链,导致在固相肽合成后直接在树脂裂解时形成可调节的肽 MC 组装体。与原始未组装序列相比,当将这两种类型的动态共价组装体引入到已知的抗菌肽buforin II 中时,它们都显著提高了整体抗菌性能。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/5648/5942189/bd053eb74cce/nihms959967f1.jpg

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