Wani Naiem Ahmad, Ben Hur Daniel, Kapach Gal, Stolovicki Elad, Rotem Etai, Shai Yechiel
Department of Biomolecular Sciences, Weizmann Institute of Science, Rehovot 76100, Israel.
ACS Infect Dis. 2021 Jun 11;7(6):1702-1712. doi: 10.1021/acsinfecdis.1c00037. Epub 2021 May 27.
Antimicrobial peptides (AMPs), which can be modified to kill a broad spectrum of microoganisms or a specific microorganism, are considered as promising alternatives to combat the rapidly widespread, resistant bacterial infections. However, there are still several obstacles to overcome. These include toxicity, stability, and the ability to interfere with the immune response and bacterial resistance. To overcome these challenges, we herein replaced the regular peptide bonds with isopeptide bonds to produce new AMPs based on the well-known synthetic peptides Amp1L and MSI-78 (pexiganan). Two new peptides Amp1EP and MSIEP were generated while retaining properties such as size, sequence, charge, and molecular weight. These new peptides have reduced toxicity toward murine macrophage (RAW 264.7) cells, human monocytic (THP-1) cells, and human red blood cells (hRBCs) and enhanced the stability toward proteolytic degradation. Importantly, the new peptides do not repress the pro-inflammatory cytokine and hence should not modulate the immune response. Structurally, the new peptides, Amp1EP and MSIEP, have a structure of random coils in contrast to the helical structures of the parental peptides as revealed by circular dichroism (CD) analysis. Their mode of action, assessed by flow cytometry, includes permeabilization of the bacterial membrane. Overall, we present here a new approach to modulate AMPs to develop antimicrobial peptides for future therapeutic purposes.
抗菌肽(AMPs)可经修饰以杀死广谱微生物或特定微生物,被视为对抗迅速传播的耐药细菌感染的有前景的替代物。然而,仍有几个障碍需要克服。这些障碍包括毒性、稳定性以及干扰免疫反应和细菌耐药性的能力。为了克服这些挑战,我们在此用异肽键取代常规肽键,基于著名的合成肽Amp1L和MSI-78(派罗欣)生产新的抗菌肽。生成了两种新肽Amp1EP和MSIEP,同时保留了诸如大小、序列、电荷和分子量等特性。这些新肽对小鼠巨噬细胞(RAW 264.7)、人单核细胞(THP-1)和人红细胞(hRBCs)的毒性降低,且对蛋白水解降解的稳定性增强。重要的是,新肽不会抑制促炎细胞因子,因此不应调节免疫反应。从结构上看,如圆二色性(CD)分析所示,与亲本肽的螺旋结构相比,新肽Amp1EP和MSIEP具有无规卷曲结构。通过流式细胞术评估,它们的作用方式包括使细菌膜通透化。总体而言,我们在此提出一种调节抗菌肽的新方法,以开发用于未来治疗目的的抗菌肽。