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探讨谷胱甘肽毒素的抗菌作用:它是诱导氧化应激还是蛋白质损伤?

Exploring the antibacterial action of gliotoxin: Does it induce oxidative stress or protein damage?

机构信息

Laboratory of Antimicrobial Resistance, Institute of Ecological and Agricultural Biology (X-BIO), Tyumen State University, Tyumen, Russia.

Laboratory of Antimicrobial Resistance, Institute of Ecological and Agricultural Biology (X-BIO), Tyumen State University, Tyumen, Russia.

出版信息

Biochimie. 2023 Nov;214(Pt B):86-95. doi: 10.1016/j.biochi.2023.06.009. Epub 2023 Jun 23.

Abstract

The study aimed to investigate the effects of gliotoxin (GTX), a secondary fungal metabolite belonging to the epipolythiodioxopiperazines class, on Gram-positive and Gram-negative bacteria. While the cytotoxic mechanism of GTX on eukaryotes is well understood, its interaction with bacteria is not yet fully comprehended. The study discovered that S. epidermidis displayed a higher uptake rate of GTX than E.coli. However, Gram-negative bacteria required higher doses of GTX than Gram-positive bacteria to experience the bactericidal effect, which occurred within 4 h for both types of bacteria. The treatment of bioluminescent sensor E.coli MG1655 pKatG-lux with GTX resulted in oxidative stress. Pre-incubation with the antioxidant Trolox did not increase the GTX inhibitory dose, however, slightly increased the bacterial growth rate comparing to GTX alone. At the same time, we found that GTX inhibitory dose was significantly increased by the pretreatment of bacteria with 2-mercaptoethanol and reduced glutathione. Using another biosensor, E. coli MG1655 pIpbA-lux, we showed that bacteria treated with GTX exhibited heat shock stress. SDS-page electrophoresis demonstrated protein aggregation under the GTX treatment. In addition, we have found that gliotoxin's action on bacteria was significantly inhibited when zinc salt was added to the growth medium.

摘要

本研究旨在探讨属于硫代二氧杂环戊二酮类的真菌次生代谢产物表鬼笔环肽(GTX)对革兰氏阳性菌和革兰氏阴性菌的影响。虽然 GTX 对真核生物的细胞毒性机制已被充分了解,但它与细菌的相互作用尚未完全被理解。研究发现,表皮葡萄球菌对 GTX 的摄取率高于大肠杆菌。然而,革兰氏阴性菌需要比革兰氏阳性菌更高剂量的 GTX 才能产生杀菌作用,两种类型的细菌都在 4 小时内发生。GTX 处理发光生物传感器大肠杆菌 MG1655 pKatG-lux 会导致氧化应激。用抗氧化剂 Trolox 进行预孵育并没有增加 GTX 的抑制剂量,但与单独使用 GTX 相比,略微增加了细菌的生长速度。同时,我们发现 2-巯基乙醇和还原型谷胱甘肽预处理细菌可以显著增加 GTX 的抑制剂量。使用另一种生物传感器大肠杆菌 MG1655 pIpbA-lux,我们表明用 GTX 处理的细菌表现出热休克应激。SDS-聚丙烯酰胺凝胶电泳显示 GTX 处理后蛋白质聚集。此外,我们发现当在生长培养基中加入锌盐时,GTX 对细菌的作用明显受到抑制。

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