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首页> 外文期刊>Methods and Protocols >Strategies to Investigate Membrane Damage, Nucleoid Condensation, and RNase Activity of Bacterial Toxin–Antitoxin Systems
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Strategies to Investigate Membrane Damage, Nucleoid Condensation, and RNase Activity of Bacterial Toxin–Antitoxin Systems

机译:调查膜损伤,核凝结和细菌毒素 - 抗毒素系统的核凝结和RNase活性的策略

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A large number of bacterial toxin–antitoxin (TA) systems have been identified so far and different experimental approaches have been explored to investigate their activity and regulation both in vivo and in vitro. Nonetheless, a common feature of these methods is represented by the difficulty in cell transformation, culturing, and stability of the transformants, due to the expression of highly toxic proteins. Recently, in dealing with the type I Lpt/RNAII and the type II YafQ/DinJ TA systems, we encountered several of these problems that urged us to optimize methodological strategies to study the phenotype of recombinant Escherichia coli host cells. In particular, we have found conditions to tightly repress toxin expression by combining the pET expression system with the E. coli C41(DE3) pLysS strain. To monitor the RNase activity of the YafQ toxin, we developed a fluorescence approach based on Thioflavin-T which fluoresces brightly when complexed with bacterial RNA. Fluorescence microscopy was also applied to reveal loss of membrane integrity associated with the activity of the type I toxin Lpt, by using DAPI and ethidium bromide to selectively stain cells with impaired membrane permeability. We further found that atomic force microscopy can readily be employed to characterize toxin-induced membrane damages.
机译:已经确定了大量的细菌毒素 - 抗毒素(TA)系统到目前为止,已经探讨了不同的实验方法,以研究体内和体外的活性和调节。尽管如此,由于高度毒性蛋白质的表达,这些方法的难题是通过细胞转化,培养和转化体的稳定性的难度来表示。最近,在处理I型LPT / RNAII和II型YAFQ / DINJ TA系统时,我们遇到了一些这些问题,敦促我们优化研究重组大肠杆菌宿主细胞的表型的方法。特别地,我们发现通过将PET表达系统与大肠杆菌C41(DE3)帘布层菌株组合来紧密地压制毒素表达的条件。为了监测YAFQ毒素的RNase活性,我们开发了一种基于硫蛋白-T的荧光方法,该荧光方法在用细菌RNA复合时明亮地荧光。还应用荧光显微镜检查以揭示与I型毒素LPT的活性相关的膜完整性的损失,通过使用DAPI和溴化乙锭选择性地染色膜渗透性受损的细胞。我们进一步发现,可以容易地使用原子力显微镜表征毒素诱导的膜损伤。

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