Subcellular Signaling Events

Subcellular signaling events are coordinated molecular changes within cells that transmit information and regulate processes such as metabolism, gene expression, movement, and survival. They occur when signals activate receptors or intracellular sensors, triggering second messengers such as calcium ions or cyclic AMP, protein phosphorylation, and the movement or assembly of signaling proteins in specific cellular compartments. These localized pathways allow cells to produce rapid, precise responses while limiting unintended effects elsewhere in the cell. Studying subcellular signaling events helps explain normal cell function and disease mechanisms, and supports research into drug targets, cell-based therapies, and biomarkers of cellular dysfunction.

Subcellular Signaling Events - Related Videos

Research

JoVE Journal - Biology

Imaging G-protein Coupled Receptor (GPCR)-mediated Signaling Events that Control Chemotaxis of Dictyostelium Discoideum

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Cited by 2 •

2011

Here, we describe detailed live cell imaging methods for investigating chemotaxis. We present fluorescence microscopic methods to monitor spatiotemporal dynamics of signaling events in migrating cells. Measurement of signaling events permits us to further understand how a GPCR-signaling network achieves gradient sensing of chemoattractants and controls directional migration of eukaryotic cells.

Research

JoVE Journal - Biology
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Imaging G Protein-coupled Receptor-mediated Chemotaxis and its Signaling Events in Neutrophil-like HL60 Cells

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Cited by 7 •

2016

Visual chemotaxis assays are essential for a better understanding of how eukaryotic cells control chemoattractant-mediated directional cell migration. Here, we describe detailed methods for: 1) real-time, high-resolution monitoring of multiple chemotaxis assays, and 2) simultaneously visualizing the chemoattractant gradient and the spatiotemporal dynamics of signaling events in neutrophil-like HL60 cells.

Live Cell Imaging of Early Autophagy Events: Omegasomes and Beyond

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Cited by 13 •

2013

Time-lapse microscopy of fluorescently labeled autophagy markers allows monitoring of the dynamic autophagy response with high temporal resolution. Using specific autophagy and organelle markers in a combination of 3 different colors, we can follow the contribution of a protein to autophagosome formation in a robust spatial and temporal context.

FRET Microscopy for Real-time Monitoring of Signaling Events in Live Cells Using Unimolecular Biosensors

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Cited by 29 •

2012

Förster resonance energy transfer (FRET) microscopy is a powerful technique for real-time monitoring of signaling events in live cells using various biosensors as reporters. Here we describe how to build a customized epifluorescence FRET imaging system from commercially available components and how to use it for FRET experiments.

Imaging Subcellular Structures in the Living Zebrafish Embryo

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Cited by 8 •

2016

Imaging the dynamic behavior of organelles and other subcellular structures in vivo can shed light on their function in physiological and disease conditions. Here, we present methods for genetically tagging two organelles, centrosomes and mitochondria, and imaging their dynamics in living zebrafish embryos using wide-field and confocal microscopy.

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