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首页|Far-red and sensitive sensor for monitoring real-time H2O2 dynamics with subcellular resolution and in multi-parametric imaging applications.

Far-red and sensitive sensor for monitoring real-time H2O2 dynamics with subcellular resolution and in multi-parametric imaging applications.

Far-red and sensitive sensor for monitoring real-time H2O2 dynamics with subcellular resolution and in multi-parametric imaging applications.

来源:bioRxiv_logobioRxiv
英文摘要

H2O2 is a key oxidant in mammalian biology and a pleiotropic signaling molecule at the physiological level, and its excessive accumulation in conjunction with decreased cellular reduction capacity is often found to be a common pathological marker. Here, we present a red fluorescent Genetically Encoded H 2 O 2 Indicator (GEHI) allowing versatile optogenetic dissection of redox biology. Our new GEHI, oROS-HT, is a chemigenetic sensor utilizing a HaloTag and Janelia Fluor (JF) rhodamine dye as fluorescent reporters. We developed oROS-HT through a structure-guided approach aided by classic protein structures and recent protein structure prediction tools. Optimized with JF 635 , oROS-HT is a sensor with 635 nm excitation and 650 nm emission peaks, allowing it to retain its brightness while monitoring intracellular H 2 O 2 dynamics. Furthermore, it enables multi-color imaging in combination with blue-green fluorescent sensors for orthogonal analytes and low auto-fluorescence interference in biological tissues. Other advantages of oROS-HT over alternative GEHIs are its fast kinetics, oxygen-independent maturation, low pH sensitivity, lack of photo artifact, and lack of intracellular aggregation. Here, we demonstrated efficient subcellular targeting and how oROS-HT can map inter and intracellular H2O2 diffusion at subcellular resolution. Lastly, we used oROS-HT with the green fluorescent calcium indicator Fluo-4 to investigate the transient effect of the anti-inflammatory agent auranofin on cellular redox physiology and calcium levels via multi-parametric, dual-color imaging.

Young Jessica E.、Chavan Vedant、Jin Zheyu Ruby、Moghadasi Aida、Wait Sarah J、Evitts Kira M.、Smith Netta、Mack David L、Bremner Samantha B.、Lee Justin Daho、Williams Andy、Zuniga Shani、Regnier Michael、Boyle Patrick M.、Gibbs Chelsea E.、Nance Elizabeth、Asencio Anthony、Nguyen Amanda、Berndt Andre

10.1101/2024.02.06.579232

生物科学现状、生物科学发展生物科学研究方法、生物科学研究技术生物化学

Young Jessica E.,Chavan Vedant,Jin Zheyu Ruby,Moghadasi Aida,Wait Sarah J,Evitts Kira M.,Smith Netta,Mack David L,Bremner Samantha B.,Lee Justin Daho,Williams Andy,Zuniga Shani,Regnier Michael,Boyle Patrick M.,Gibbs Chelsea E.,Nance Elizabeth,Asencio Anthony,Nguyen Amanda,Berndt Andre.Far-red and sensitive sensor for monitoring real-time H2O2 dynamics with subcellular resolution and in multi-parametric imaging applications.[EB/OL].(2025-03-28)[2025-08-02].https://www.biorxiv.org/content/10.1101/2024.02.06.579232.点此复制

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