Genetically Encoded Fluorescent Sensors for Intracellular NADH Detection

We have developed genetically encoded fluorescent sensors for reduced nicotinamide adenine dinucleotide (NADH), which manifest a large change in fluorescence upon NADH binding. We demonstrate the utility of these sensors in mammalian cells by monitoring the dynamic changes in NADH levels in subcellu...

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Veröffentlicht in:Cell metabolism 2011-10, Vol.14 (4), p.555-566
Hauptverfasser: Zhao, Yuzheng, Jin, Jing, Hu, Qingxun, Zhou, Hai-Meng, Yi, Jing, Yu, Zhenhang, Xu, Lei, Wang, Xue, Yang, Yi, Loscalzo, Joseph
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Sprache:eng
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Zusammenfassung:We have developed genetically encoded fluorescent sensors for reduced nicotinamide adenine dinucleotide (NADH), which manifest a large change in fluorescence upon NADH binding. We demonstrate the utility of these sensors in mammalian cells by monitoring the dynamic changes in NADH levels in subcellular organelles as affected by NADH transport, glucose metabolism, electron transport chain function, and redox environment, and we demonstrate the temporal separation of changes in mitochondrial and cytosolic NADH levels with perturbation. These results support the view that cytosolic NADH is sensitive to environmental changes, while mitochondria have a strong tendency to maintain physiological NADH homeostasis. These sensors provide a very good alternative to existing techniques that measure endogenous fluorescence of intracellular NAD(P)H and, owing to their superior sensitivity and specificity, allow for the selective monitoring of total cellular and compartmental responses of this essential cofactor. [Display omitted] ► Frex sensors are highly selective and responsive toward NADH ► Frex sensors allow spatiotemporal monitoring of free NADH in subcellular compartments ► Exogenous NADH is transported across the plasma membrane readily ► Changes in mitochondrial and cytosolic NADH levels are temporally separated
ISSN:1550-4131
1932-7420
DOI:10.1016/j.cmet.2011.09.004