Capítulo 17.-- Editores: Preston B. Rich; Christelle Douillet.-- El pdf es la versión pre-print.Ca2+ oscillations inside intracellular organelles are important for regulation of functions such as gene expression at the nucleus, respiration at mitochondria or protein processing at the endoplasmic reticulum. Targeted aequorins are excellent calcium probes for subcellular analysis, but single-cell imaging has proven difficult because of low light yield. Here we describe a procedure that combines virus-based expression of targeted aequorins with photon-counting imaging. This methodology allows real-time resolution of changes of cytosolic, mitochondrial or nuclear Ca2+ signals at the single-cell level.Peer reviewe
Calcium (Ca 2+) waves and Ca 2+ oscillations within cells initiate a wide range of physiological pro...
Aequorin, a 22 kDa protein produced by the jellyfish Aequorea victoria, was the first probe used to ...
Producción CientíficaMitochondria take up calcium during cell activation thus shaping Ca2+ signaling...
Measurements of local Ca2+ signalling at different developmental stages and/or in specific cell type...
Measurements of local Ca2+ signalling at different developmental stages and/or in specific cell type...
In this chapter, we describe the practical aspects of measuring [Ca<sup>2+</sup>] transients that ar...
The construction and application of genetically encoded intracellular calcium concentration ([Ca2+]i...
Aequorins are excellent tools for measuring intra-organellar Ca and assessing its role in physiologi...
Real-time visualization of calcium (Ca(2+)) dynamics in the whole animal will enable important advan...
International audienceGenetically encoded indicators are valuable tools to study intracellular signa...
The photoprotein aequorin generates blue light upon binding of Ca2+ ions. Together with its very lo...
Specific targeting of the recombinant, Ca2+ -sensitive photoprotein, aequorin to intracellular organ...
Real-time visualization of calcium (Ca 2+ ) dynamics in the whole animal will enable important advan...
In the last two decades, the study of Ca2+ homeostasis in living cells received a great impulse by t...
Specific targeting of the recombinant, Ca2+ -sensitive photoprotein, aequorin to intracellular organ...
Calcium (Ca 2+) waves and Ca 2+ oscillations within cells initiate a wide range of physiological pro...
Aequorin, a 22 kDa protein produced by the jellyfish Aequorea victoria, was the first probe used to ...
Producción CientíficaMitochondria take up calcium during cell activation thus shaping Ca2+ signaling...
Measurements of local Ca2+ signalling at different developmental stages and/or in specific cell type...
Measurements of local Ca2+ signalling at different developmental stages and/or in specific cell type...
In this chapter, we describe the practical aspects of measuring [Ca<sup>2+</sup>] transients that ar...
The construction and application of genetically encoded intracellular calcium concentration ([Ca2+]i...
Aequorins are excellent tools for measuring intra-organellar Ca and assessing its role in physiologi...
Real-time visualization of calcium (Ca(2+)) dynamics in the whole animal will enable important advan...
International audienceGenetically encoded indicators are valuable tools to study intracellular signa...
The photoprotein aequorin generates blue light upon binding of Ca2+ ions. Together with its very lo...
Specific targeting of the recombinant, Ca2+ -sensitive photoprotein, aequorin to intracellular organ...
Real-time visualization of calcium (Ca 2+ ) dynamics in the whole animal will enable important advan...
In the last two decades, the study of Ca2+ homeostasis in living cells received a great impulse by t...
Specific targeting of the recombinant, Ca2+ -sensitive photoprotein, aequorin to intracellular organ...
Calcium (Ca 2+) waves and Ca 2+ oscillations within cells initiate a wide range of physiological pro...
Aequorin, a 22 kDa protein produced by the jellyfish Aequorea victoria, was the first probe used to ...
Producción CientíficaMitochondria take up calcium during cell activation thus shaping Ca2+ signaling...