MagFRET: The First Genetically Encoded Fluorescent Mg2+ Sensor
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Summary
It is expected that these genetically encoded and ratiometric fluorescent Mg2+ sensors could prove very useful in understanding intracellular Mg 2+ homeostasis and signaling.
- Type
- article
- Published
- 2013-12-02
- Cited by
- 70
- References
- 62
- Access
- Open access
- OpenAlex
- https://openalex.org/W24312622
- Semantic Scholar
- https://api.semanticscholar.org/CorpusID:29019266
Keywords
Political science
References
- Intracellular magnesium and magnesium buffering
- Magnesium homeostasis in mammalian cells.
- Regulation of free and bound magnesium in rat hepatocytes and isolated mitochondria.
- Fluorescent indicators for Ca2+based on green fluorescent proteins and calmodulin
- LTRPC7 is a Mg·ATP-regulated divalent cation channel required for cell viability
- Intracellular magnesium detection by fluorescent indicators.
- Total and free Mg2+ contents in erythrocytes: a simple but still undisclosed cell model.
- Li+ Influx and Binding, and Li+/Mg2+ Competition in Bovine Chromaffin Cell Suspensions as Studied by 7Li NMR and Fluorescence Spectroscopy
- Endothelial Ca2+ waves preferentially originate at specific loci in caveolin-rich cell edges.
- The thrombin receptor elevates intracellular calcium in adult rat ventricular myocytes.
- Design and application of genetically encoded biosensors
- Detection of glutamate release from neurons by genetically encoded surface-displayed FRET nanosensors.
- Noncanonical EF-hand motif strategically delays Ca2+ buffering to enhance cardiac performance
- Tuning the metal binding site specificity of a fluorescent sensor protein: from copper to zinc and back.
- Phosphatidylinositol 4,5-bisphosphate (PIP2) controls magnesium gatekeeper TRPM6 activity
- Reducing the Environmental Sensitivity of Yellow Fluorescent Protein
- Design and synthesis of highly sensitive and selective fluorescein-derived magnesium fluorescent probes and application to intracellular 3D Mg2+ imaging.
- Expanded dynamic range of fluorescent indicators for Ca(2+) by circularly permuted yellow fluorescent proteins.
- Intracellular free magnesium in erythrocytes of essential hypertension: relation to blood pressure and serum divalent cations.
- Role of dietary magnesium in cardiovascular disease prevention, insulin sensitivity and diabetes
Cited by
- Designing Flavoprotein-GFP fusion Probes for Analyte-specific Ratiometric Fluorescence Imaging
- Visualizing changes in mitochondrial Mg2+ during apoptosis with organelle-targeted triazole-based ratiometric fluorescent sensors
- MagIC, a genetically encoded fluorescent indicator for monitoring cellular Mg2+ using a non-Förster resonance energy transfer ratiometric imaging approach
- Enhanced ratiometric fluorescent indicators for magnesium based on azoles of the heavier chalcogens.
- Engineering Genetically Encoded FRET Sensors
- Identification of a Mg2+-sensitive ORF in the 5′-leader of TRPM7 magnesium channel mRNA
- Fluorescent Protein Toolbox: Protein Engineering Broadens the Range of in vitro and in vivo Applications of Fluorescent Proteins
- Real-time functional characterization of cationic amino acid transporters using a new FRET sensor
- Design and development of genetically encoded fluorescent sensors to monitor intracellular chemical and physical parameters
- Bridging the Gap Between In Vitro and In Vivo RNA Folding
- Probing pain pathways with light.
- Design Of Genetically-Encoded Ca2+ Probes With Rapid Kinetics For Subcellular Application
- Visualizing Compartmentalized Cellular Mg2+ on Demand with Small-Molecule Fluorescent Sensors.
- Exploring cells with targeted biosensors
- Engineering protein switches for sensing and actuation
- Recent Advances in Development of Genetically Encoded Fluorescent Sensors.
- Critical comparison of FRET-sensor functionality in the cytosol and endoplasmic reticulum and implications for quantification of ions
- Cardiac optogenetics: using light to monitor cardiac physiology
- Visualization of long-term Mg2+ dynamics in apoptotic cells using a novel targetable fluorescent probe
- Live cell imaging of vitamin B12 dynamics by genetically encoded fluorescent nanosensor
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