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首页> 外文期刊>Russian journal of bioorganic chemistry >Genetically encoded fluorescent sensors for redox processes
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Genetically encoded fluorescent sensors for redox processes

机译:基因编码的荧光传感器用于氧化还原过程

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摘要

Redox processes play a key role in the cells of any organism. These processes imply directed flows of electrons transferred via the so-called redox pairs-compounds present in cells simultaneously in both oxidized and reduced states such as NAD(+)/NADH, NADP(+)/NADPH, GSSG/GSH. Up to now, investigation of redox processes in live cells has been hampered by the lack of suitable methods. Genetically encoded fluorescent biosensors represent a new tool for investigation of biological processes including redox ones. Biosensors allow real-time monitoring of messengers, metabolites, and enzyme activities in live systems of different levels of complexity from cultivated cells to transgenic animals. Major types of the known redox-biosensors and examples of their application are presented in this review.
机译:氧化还原过程在任何生物的细胞中都起着关键作用。这些过程暗示了通过氧化还原对化合物转移的电子的定向流动,这些化合物同时以氧化态和还原态(例如NAD(+)/ NADH,NADP(+)/ NADPH,GSSG / GSH)存在于细胞中。迄今为止,由于缺乏合适的方法,阻碍了活细胞氧化还原过程的研究。遗传编码的荧光生物传感器代表了一种用于研究包括氧化还原过程在内的生物过程的新工具。生物传感器可以实时监测从培养细胞到转基因动物的各种复杂程度的活体系统中的信使,代谢物和酶活性。这篇综述介绍了已知的氧化还原生物传感器的主要类型及其应用实例。

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