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天然和工程化的克氏锥虫肽的抗李斯特菌活性的微观和代谢组学分析。

Microscopic and metabolomics analysis of the anti-Listeria activity of natural and engineered cruzioseptins.

机构信息

Microbial Biomolecules Laboratory, Faculty of Pharmaceutical Sciences, University of São Paulo, Rua do Lago 250, São Paulo, 05508-000, SP, Brazil.

Dempster MS Lab, Chemical Engineering Department of Polytechnic School of University of São Paulo, Rua do Lago 250, São Paulo, 05508-080, SP, Brazil.

出版信息

Biochimie. 2024 Oct;225:168-175. doi: 10.1016/j.biochi.2024.05.022. Epub 2024 May 31.

Abstract

Listeria monocytogenes is a human opportunistic foodborne pathogen that produces life-threatening infections with a high mortality rate. The control of Listeria in the food production environment and effective clinical management of human listeriosis are challenging due to the emergence of antibiotic resistance. Hence we evaluate the in vitro anti-Listeria activity of two synthetic cruzioseptins reproducing their natural sequences CZS-9, and CZS-12, and one engineered sequence based on CZS-1, named [K4K15]CZS-1. The assessment of the in vitro potential of cruzioseptins, highlighted the promising antibacterial effect of [K4K15]CZS-1 in very low concentrations (0.91 μM) and its thermal stability at high-temperature conditions, is compatible with the food industry. Microscopic and metabolomic analyses suggest cruzioseptin induces anti-Listeria bioactivity through membrane disruption and changes in the intracellular metabolome. We also report that [K4K15]CZS-1 is not resistant to peptidases/proteases emphasizing a key advantage for their use as a food preservative. However, there is a need for further structural and functional optimisations for the potential clinical application as an antibiotic. In conclusion, [K4K15]CZS-1 stand out as membrane-active peptides with the ability to induce shifts in the bacteria metabolome and inspire the development of strategies for the prevention of L. monocytogenes emergence and dissemination.

摘要

李斯特菌单核细胞增生李斯特菌是一种人类机会性食源性病原体,可导致危及生命的感染,死亡率很高。由于抗生素耐药性的出现,控制食品生产环境中的李斯特菌和有效治疗人类李斯特菌病具有挑战性。因此,我们评估了两种合成的卷曲菌素 CZS-9 和 CZS-12 及其基于 CZS-1 的工程序列 [K4K15]CZS-1 的抗李斯特菌体外活性。卷曲菌素的体外潜力评估突出了 [K4K15]CZS-1 在非常低浓度(0.91 μM)下的有希望的抗菌作用及其在高温条件下的热稳定性,与食品工业兼容。显微镜和代谢组学分析表明,卷曲菌素通过破坏细胞膜和改变细胞内代谢组来诱导抗李斯特菌生物活性。我们还报告说,[K4K15]CZS-1 不易被肽酶/蛋白酶抵抗,这强调了它们作为食品防腐剂的一个关键优势。然而,为了将其作为抗生素进行临床应用,需要进一步进行结构和功能优化。总之,[K4K15]CZS-1 是一种膜活性肽,具有诱导细菌代谢组发生变化的能力,并激发了预防李斯特菌出现和传播的策略的发展。

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