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首页> 外文期刊>Experimental Biology and Medicine: Journal of the Society for Experimental Biology and Medicine >Engineering redox-sensitive linkers for genetically encoded FRET-based biosensors.
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Engineering redox-sensitive linkers for genetically encoded FRET-based biosensors.

机译:用于基于基因编码的FRET的生物传感器的工程氧化还原敏感接头。

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摘要

The ability to sense intracellular or intraorganellar reduction/oxidation conditions would provide a powerful tool for studying normal cell proliferation, differentiation, and apoptosis. Genetically encoded biosensors enable monitoring of the intracellular redox environment. We report the development of chimeric polypeptides useful as redox-sensitive linkers in conjunction with Forster resonance energy transfer (FRET). Alpha-helical linkers differing in length were combined with motifs that are sensitive to the redox state of the environment. The first category of linkers included a redox motif found in the thioredoxin family of oxidoreductases. This motif was flanked by two alpha-helices of equal length. The second and third categories of redox linkers were composed of alpha-helices with embedded adjacent and dispersed vicinal cysteine residues, respectively. The linkers containing redox switches were placed between a FRET pair of enhanced cyan and yellow fluorescent proteins and these constructs weretested subsequently for their efficacy. A robust method of FRET analysis, the (ratio)(A) method, was used. This method uses two fluorescence spectra performed directly on the FRET construct without physical separation of the fluorophores. The cyan/yellow construct carrying one of the designed redox linkers, RL5, exhibited a 92% increase in FRET efficiency from its reduced to oxidized states. Responsiveness of the cyan-RL5-yellow construct to changes in the intracellular redox environment was confirmed in mammalian cells by flow cytometry.
机译:感知细胞内或细胞内还原/氧化条件的能力将为研究正常细胞的增殖,分化和凋亡提供强大的工具。遗传编码的生物传感器可以监控细胞内的氧化还原环境。我们报道了与Forster共振能量转移(FRET)结合用作氧化还原敏感接头的嵌合多肽的发展。长度不同的α-螺旋接头与对环境的氧化还原状态敏感的基序组合。第一类接头包括在氧化还原酶的硫氧还蛋白家族中发现的氧化还原基序。这个主题的侧面是两个等长的α螺旋。第二和第三类氧化还原接头由α-螺旋组成,它们分别具有邻近的和分散的邻近的半胱氨酸残基。将含有氧化还原开关的接头置于FRET增强的蓝绿色和黄色荧光蛋白对之间,随后测试这些构建体的功效。使用了一种鲁棒的FRET分析方法,即(比率)(A)方法。该方法使用直接在FRET构建体上执行的两个荧光光谱,而没有荧光团的物理分离。带有设计的氧化还原接头之一RL5的青色/黄色构建体,其FRET效率从还原态变为氧化态,提高了92%。通过流式细胞术证实了在哺乳动物细胞中,氰基-RL5-黄色构建体对细胞内氧化还原环境变化的响应性。

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