Applied Microbiology, Faculty of Biology and Biotechnology, Ruhr University Bochum, Bochum, Germany.
J R Soc Interface. 2023 Oct;20(207):20230300. doi: 10.1098/rsif.2023.0300. Epub 2023 Oct 25.
Cold atmospheric pressure plasmas are used for surface decontamination or disinfection, e.g. in clinical settings. Protein aggregation has been shown to significantly contribute to the antibacterial mechanisms of plasma. To investigate the potential role of the redox-activated zinc-binding chaperone Hsp33 in preventing protein aggregation and thus mediating plasma resistance, we compared the plasma sensitivity of wild-type to that of an deletion mutant lacking Hsp33 as well as an over-producing strain. Over-production of Hsp33 increased plasma survival rates above wild-type levels. Hsp33 was previously shown to be activated by plasma . For the PlasmaDerm source applied in dermatology, reversible activation of Hsp33 was confirmed. Thiol oxidation and Hsp33 unfolding, both crucial for Hsp33 activation, occurred during plasma treatment. After prolonged plasma exposure, however, unspecific protein oxidation was detected, the ability of Hsp33 to bind zinc ions was decreased without direct modifications of the zinc-binding motif, and the protein was inactivated. To identify chemical species of potential relevance for plasma-induced Hsp33 activation, reactive oxygen species were tested for their ability to activate Hsp33 . Superoxide, singlet oxygen and potentially atomic oxygen activate Hsp33, while no evidence was found for activation by ozone, peroxynitrite or hydroxyl radicals.
冷等离体大气压等离子体用于表面净化或消毒,例如在临床环境中。蛋白质聚集已被证明对等离子体的抗菌机制有重要贡献。为了研究氧化还原激活的锌结合伴侣分子 Hsp33 在防止蛋白质聚集和介导等离子体抗性中的潜在作用,我们比较了野生型 与缺乏 Hsp33 的缺失突变体以及过表达菌株的等离子体敏感性。Hsp33 的过表达使等离子体存活率高于野生型水平。Hsp33 以前被证明可以被等离子体激活。对于应用于皮肤科的 PlasmaDerm 源,证实了 Hsp33 的可逆激活。在等离子体处理过程中,发生了 Hsp33 激活所必需的巯基氧化和 Hsp33 展开。然而,经过长时间的等离子体暴露,检测到非特异性蛋白质氧化,Hsp33 结合锌离子的能力下降,而锌结合基序没有直接修饰,并且蛋白质失活。为了确定与等离子体诱导的 Hsp33 激活相关的潜在化学物质,测试了活性氧物质激活 Hsp33 的能力。超氧化物、单线态氧和潜在的原子氧激活 Hsp33,而没有证据表明臭氧、过氧亚硝酸盐或羟基自由基具有激活作用。