Lipid Trafficking

Lipid trafficking is the regulated movement of lipids between cellular membranes and organelles, a process that maintains membrane composition, energy balance, and signaling. It occurs through vesicular transport, lipid-transfer proteins, and selective membrane contacts, where lipids are synthesized, modified, sorted, and delivered to specific destinations. In neuroscience, lipid trafficking supports axonal transport, synaptic vesicle formation, myelin maintenance, and signaling in neurons and glial cells. Disruptions in these pathways can alter membrane dynamics and contribute to neurodegenerative disease, making lipid transport an important focus for understanding neural function and identifying potential therapeutic targets.

Lipid Trafficking - Related Videos

Research

JoVE Journal - Biology

Analysis of SCAP N-glycosylation and Trafficking in Human Cells

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Cited by 17 •

2016

We describe a modified method for membrane fraction isolation from human cells and sample preparation for the detection of SCAP N-glycosylation and total protein by using western blot. We further introduce a GFP-labeling method to monitor SCAP trafficking using confocal microscopy. This protocol can be used in regular biology laboratories.

Research

JoVE Journal - Developmental Biology
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Visualizing Cytoskeleton-Dependent Trafficking of Lipid-Containing Organelles in Drosophila Embryos

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Cited by 5 •

2021

In the early Drosophila embryo, many organelles are motile. In principle, they can be imaged live via specific fluorescent probes, but the eggshell prevents direct application to the embryo. This protocol describes how to introduce such probes via microinjection, and then analyze bulk organelle motion via particle image velocimetry.

Imaging the Intracellular Trafficking of APP with Photoactivatable GFP

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Cited by 6 •

2015

While the transport of cell surface proteins is relatively easily studied, visualizing the trafficking of intracellular proteins is much more difficult. Here, we use constructs incorporating photoactivatable GFP and demonstrate a method to accurately follow the amyloid precursor protein from the Golgi apparatus to down-stream compartments and follow its clearance.

Tracking Drug-induced Changes in Receptor Post-internalization Trafficking by Colocalizational Analysis

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Cited by 1 •

2015

Receptor trafficking modulates signaling and cell responsiveness to ligands and is, itself, responsive to cell conditions, including ligand-induced signaling. Here, we describe a powerful and flexible technique for quantitatively assessing drug-induced receptor trafficking using immunolabeling and colocalizational analysis.

Utilizing pHluorin-tagged Receptors to Monitor Subcellular Localization and Trafficking

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Cited by 3 •

2017

Labeling the extracellular domain of a membrane protein with a pH sensitive fluorophore, superecliptic pHluorin (SEP), allows subcellular localization, expression, and trafficking to be determined. Imaging SEP-labeled proteins with total internal reflection fluorescence microscopy (TIRFM) enables the quantification of protein levels in the peripheral ER and plasma membrane.

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