Biochemical Journal · 2012 · 42 citations · 33 references
Molecular BiologyCellular PhysiologyEndocytic PathwaySpecific Ca2+ ReleaseCell SignalingIntracellular OrganellesMolecular PhysiologyCameleon SensorMolecular Biological MethodMembrane BiologyProtein TransportCell BiologyLysosome BiologySignal TransductionNatural SciencesGenetic EngineeringIntracellular TraffickingCellular BiochemistryChemical ProbeMedicine
Distinct spatiotemporal Ca2+ signalling events regulate fundamental aspects of eukaryotic cell physiology. Complex Ca2+ signals can be driven by release of Ca2+ from intracellular organelles that sequester Ca2+ such as the ER (endoplasmic reticulum) or through the opening of Ca2+-permeable channels in the plasma membrane and influx of extracellular Ca2+. Late endocytic pathway compartments including late-endosomes and lysosomes have recently been observed to sequester Ca2+ to levels comparable with those found within the ER lumen. These organelles harbour ligand-gated Ca2+-release channels and evidence indicates that they can operate as Ca2+-signalling platforms. Lysosomes sequester Ca2+ to a greater extent than any other endocytic compartment, and signalling from this organelle has been postulated to provide 'trigger' release events that can subsequently elicit more extensive Ca2+ signals from stores including the ER. In order to investigate lysosomal-specific Ca2+ signalling a simple method for measuring lysosomal Ca2+ release is essential. In the present study we describe the generation and characterization of a genetically encoded, lysosomally targeted, cameleon sensor which is capable of registering specific Ca2+ release in response to extracellular agonists and intracellular second messengers. This probe represents a novel tool that will permit detailed investigations examining the impact of lysosomal Ca2+ handling on cellular physiology.
33
Fluorescent indicators for Ca2+based on green fluorescent proteins and calmodulin
Atsushi Miyawaki, Juan Llopis, Roger Heim et al. · Nature · 1997 · 3.2K citations · Full text
Fluorescent Indicators, Signal Transduction, Biochemistry +8
Imaging neural activity in worms, flies and mice with improved GCaMP calcium indicators
Lin Tian, Samuel Andrew Hires, Tianyi Mao et al. · Nature Methods · 2009 · 2K citations · Full text
NAADP mobilizes calcium from acidic organelles through two-pore channels
Peter Calcraft, Margarida Ruas, Zui Pan et al. · Nature · 2009 · 740 citations · Full text