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首页> 外文期刊>Antioxidants and redox signalling >Dissecting Redox Biology Using Fluorescent Protein Sensors
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Dissecting Redox Biology Using Fluorescent Protein Sensors

机译:使用荧光蛋白传感器解剖氧化还原生物学

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Significance: Fluorescent protein sensors have revitalized the field of redox biology by revolutionizing the study of redox processes in living cells and organisms. Recent Advances: Within one decade, a set of fundamental new insights has been gained, driven by the rapid technical development of in vivo redox sensing. Redox-sensitive yellow and green fluorescent protein variants (rxYFP and roGFPs) have been the central players. Critical Issues: Although widely used as an established standard tool, important questions remain surrounding their meaningful use in vivo. We review the growing range of thiol redox sensor variants and their application in different cells, tissues, and organisms. We highlight five key findings where in vivo sensing has been instrumental in changing our understanding of redox biology, critically assess the interpretation of in vivo redox data, and discuss technical and biological limitations of current redox sensors and sensing approaches. Future Directions: We explore how novel sensor variants may further add to the current momentum toward a novel mechanistic and integrated understanding of redox biology in vivo.
机译:意义:荧光蛋白传感器通过革新活细胞和生物体中氧化还原过程的研究,复兴了氧化还原生物学领域。最新进展:在十年之内,随着体内氧化还原传感技术的快速发展,已经获得了一系列基本的新见解。氧化还原敏感的黄色和绿色荧光蛋白变体(rxYFP和roGFPs)已成为主要参与者。关键问题:尽管已广泛用作已建立的标准工具,但重要的问题仍然围绕着它们在体内的有意义的使用。我们回顾了硫醇氧化还原传感器变体的增长范围及其在不同细胞,组织和生物体中的应用。我们重点介绍了五个主要发现,在这些发现中,体内感测有助于改变我们对氧化还原生物学的理解,严格评估了体内氧化还原数据的解释,并讨论了当前氧化还原传感器和感测方法的技术和生物学局限性。未来方向:我们探索新颖的传感器变体如何进一步增加当前对体内氧化还原生物学的新机制和综合理解的势头。

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