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使用Brx-roGFP2氧化还原生物传感器测量芽孢硫醇氧化还原电位变化的方法 于……中 (原文此处不完整)

Method for measurement of bacillithiol redox potential changes using the Brx-roGFP2 redox biosensor in .

作者信息

Van Loi Vu, Antelmann Haike

机构信息

Freie Universität Berlin, Institute of Biology-Microbiology, D-14195 Berlin, Germany.

出版信息

MethodsX. 2020 Apr 24;7:100900. doi: 10.1016/j.mex.2020.100900. eCollection 2020.

DOI:10.1016/j.mex.2020.100900
PMID:32420048
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC7214941/
Abstract

Recent advances in the design of genetically encoded redox biosensors, such as redox-sensitive GFP (roGFP) have facilitated the real-time imaging of the intracellular redox potential in eukaryotic cells at high sensitivity and at spatiotemporal resolution. To increase the specificity of roGFP2 for the interaction with the glutathione (GSH)/ glutathione disulfide (GSSG) redox couple, roGFP2 has been fused to glutaredoxin (Grx) to construct the Grx-roGFP2 biosensor. We have previously designed the related Brx-roGFP2 redox biosensor for dynamic measurement of the bacillithiol redox potential ( ) in the human pathogen . Here, we describe the detailed method for measurements of the oxidation degree (OxD) of the Brx-roGFP2 biosensor in using the microplate reader. In particularly, we provide details for determination of the changes during the growth and after oxidative stress. For future biosensor applications at the single cell level, we recommend the design of genome-encoded roGFP2 biosensors enabling stable expression and fluorescence in bacteria.•Brx-roGFP2 is specific for measurements of the bacillithiol redox potential in cells•Control samples for fully reduced and oxidized states of Brx-roGFP2 are required for calibration during OxD measurements•Easy to measure fluorescence excitation intensities at the 405 and 488 nm excitation maxima using microplate readers.

摘要

基因编码氧化还原生物传感器设计方面的最新进展,如氧化还原敏感型绿色荧光蛋白(roGFP),已有助于以高灵敏度和时空分辨率对真核细胞内的氧化还原电位进行实时成像。为了提高roGFP2与谷胱甘肽(GSH)/谷胱甘肽二硫化物(GSSG)氧化还原对相互作用的特异性,roGFP2已与谷氧还蛋白(Grx)融合以构建Grx-roGFP2生物传感器。我们之前设计了相关的Brx-roGFP2氧化还原生物传感器,用于动态测量人类病原体中的杆菌硫醇氧化还原电位( )。在此,我们描述了使用微孔板读数器测量 中Brx-roGFP2生物传感器氧化程度(OxD)的详细方法。特别是,我们提供了在生长过程中和氧化应激后测定 变化的详细信息。对于未来在单细胞水平的生物传感器应用,我们建议设计能够在细菌中稳定表达和发出荧光的基因组编码roGFP2生物传感器。

•Brx-roGFP2对测量 细胞中的杆菌硫醇氧化还原电位具有特异性

•在OxD测量期间进行校准时,需要Brx-roGFP2完全还原和氧化状态的对照样品

•使用微孔板读数器易于在405和488 nm激发最大值处测量荧光激发强度。

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