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pHlash: A New Genetically Encoded and Ratiometric Luminescence Sensor of Intracellular pH

机译:pHlash:一种新的基因编码与细胞内pH的比例测量荧光传感器

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摘要

We report the development of a genetically encodable and ratiometic pH probe named “pHlash” that utilizes Bioluminescence Resonance Energy Transfer (BRET) rather than fluorescence excitation. The pHlash sensor–composed of a donor luciferase that is genetically fused to a Venus fluorophore–exhibits pH dependence of its spectral emission in vitro. When expressed in either yeast or mammalian cells, pHlash reports basal pH and cytosolic acidification in vivo. Its spectral ratio response is H+ specific; neither Ca++, Mg++, Na+, nor K+ changes the spectral form of its luminescence emission. Moreover, it can be used to image pH in single cells. This is the first BRET-based sensor of H+ ions, and it should allow the approximation of pH in cytosolic and organellar compartments in applications where current pH probes are inadequate.
机译:我们报告了一种名为“ pHlash”的可遗传编码和比例pH探针的开发,该探针利用了生物发光共振能量转移(BRET)而不是荧光激发。 pHlash传感器由遗传上与维纳斯荧光团融合的供体荧光素酶组成,在体外显示出其光谱发射的pH依赖性。当在酵母或哺乳动物细胞中表达时,pHlash报告了体内的基础pH和胞质酸化。它的光谱比响应是H + 特有的; Ca ++ ,Mg ++ ,Na + 或K + 都不会改变其发光的光谱形式发射。此外,它可用于在单细胞中对pH值成像。这是第一个基于BRET的H + 离子传感器,在当前pH探针不足的应用中,它应允许近似估算细胞质和细胞器室的pH。

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