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生物材料相关的细菌清除器:简化的自组装八肽具有双层色氨酸拉链,诱导膜不稳定和细菌凋亡样死亡。

Biomaterial-Interrelated Bacterial Sweeper: Simplified Self-Assembled Octapeptides with Double-Layered Trp Zipper Induces Membrane Destabilization and Bacterial Apoptosis-Like Death.

机构信息

Laboratory of Molecular Nutrition and Immunity, The Institute of Animal Nutrition, Northeast Agricultural University, Harbin, 150030, P. R. China.

出版信息

Small Methods. 2021 Dec;5(12):e2101304. doi: 10.1002/smtd.202101304. Epub 2021 Nov 14.

DOI:10.1002/smtd.202101304
PMID:34928043
Abstract

Treatment of microbial-associated infections continues to be hampered by impaired antibacterial efficiency and the variability in nanomedicines. Herein, an octapeptide library with a double-layered zipper, constructed via a systematic arrangement, simplifying the sequence and optimizing the structure (diverse motifs including surfactant-like, central-bola, and end-bola), is assessed in terms of biological efficiency and self-assembly properties. The results indicate that peptides with double-layered Trp zipper exhibit significant antimicrobial activity. Extracellularly, affinity interactions between micelles and bacteria induce the lateral flow of the membrane and electric potential perturbation. Intracellularly, lead molecules cause apoptosis-like death, as indicated by excessive accumulation of reactive oxygen species, generation of a DNA ladder, and upregulation of mazEF expression. Among them, RW-1 performs the best in vivo and in vitro. The intersecting combination of Trp zipper and surfactants possesses overwhelming superiority with respect to bacterial sweepers (therapeutic index [TI] = 52.89), nanostructures (micelles), and bacterial damage compared to RW-2 (central-bola) and RW-3 (end-bola). These findings confirm that the combination of double-layered Trp zipper and surfactants has potential for application as a combined motif for combating microbial infection and connects the vast gap between antimicrobial peptides and self-assembly, such as Jacob's ladder.

摘要

治疗微生物相关感染仍然受到抗菌效率低下和纳米药物变异性的阻碍。本文通过系统排列构建了一个具有双层拉链的八肽文库,简化了序列并优化了结构(包括表面活性剂样、中央球和端球等多种基序),从生物效率和自组装性能方面进行了评估。结果表明,具有双层 Trp 拉链的肽具有显著的抗菌活性。在细胞外,胶束与细菌之间的亲和相互作用诱导膜的侧向流动和电势扰动。在细胞内,先导分子导致类似于细胞凋亡的死亡,这表现为活性氧的过度积累、DNA 梯的产生以及 mazEF 表达的上调。其中,RW-1 在体内和体外表现最好。与 RW-2(中央球)和 RW-3(端球)相比,Trp 拉链和表面活性剂的交叉组合在细菌清除剂(治疗指数 [TI] = 52.89)、纳米结构(胶束)和细菌损伤方面具有压倒性优势。这些发现证实,双层 Trp 拉链和表面活性剂的组合具有作为联合基序用于对抗微生物感染的潜力,并连接了抗菌肽和自组装之间的巨大差距,例如雅各布梯。

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