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基于质粒的荧光报告系统用于监测. 的氧化损伤。

A Plasmid-Based Fluorescence Reporter System for Monitoring Oxidative Damage in .

机构信息

Molecular Plant Biology, Department of Life Technologies, University of Turku, FI-20014 Turku, Finland.

Turku BioImaging and Turku Bioscience Centre, University of Turku, FI-20014 Turku, Finland.

出版信息

Sensors (Basel). 2022 Aug 23;22(17):6334. doi: 10.3390/s22176334.

Abstract

Quantitating intracellular oxidative damage caused by reactive oxygen species (ROS) is of interest in many fields of biological research. The current systems primarily rely on supplemented oxygen-sensitive substrates that penetrate the target cells, and react with ROS to produce signals that can be monitored with spectroscopic or imaging techniques. The objective here was to design a new non-invasive analytical strategy for measuring ROS-induced damage inside living cells by taking advantage of the native redox sensor system of . The developed plasmid-based sensor relies on an oxygen-sensitive transcriptional repressor IscR that controls the expression of a fluorescent marker in vivo. The system was shown to quantitatively respond to oxidative stress induced by supplemented HO and lowered cultivation temperatures. Comparative analysis with fluorescence microscopy further demonstrated that the specificity of the reporter system was equivalent to the commercial chemical probe (CellROX). The strategy introduced here is not dependent on chemical probes, but instead uses a fluorescent expression system to detect enzyme-level oxidative damage in microbial cells. This provides a cheap and simple means for analysing enzyme-level oxidative damage in a biological context in .

摘要

定量检测活性氧(ROS)引起的细胞内氧化损伤在许多生物研究领域都很有意义。目前的系统主要依赖于补充的氧敏感底物,这些底物穿透靶细胞,并与 ROS 反应产生信号,然后可以用光谱或成像技术进行监测。本研究旨在利用 的天然氧化还原传感器系统,设计一种新的非侵入性分析策略,测量活细胞内 ROS 诱导的损伤。开发的基于质粒的传感器依赖于一种氧敏感转录阻遏物 IscR,它在体内控制荧光标记物的表达。该系统被证明可以定量响应补充的 HO 和降低培养温度引起的氧化应激。与荧光显微镜的比较分析进一步表明,报告系统的特异性与商业化学探针(CellROX)相当。这里介绍的策略不依赖于化学探针,而是使用荧光表达系统来检测微生物细胞中酶水平的氧化损伤。这为分析生物背景下的酶水平氧化损伤提供了一种廉价、简单的方法。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/5e4b/9459809/ab8ee8650ff0/sensors-22-06334-g001.jpg

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