Autophagy Flux

Autophagy flux is the dynamic rate at which cells form, mature, and degrade autophagic cargo, providing a functional measure of this lysosome-dependent recycling pathway. During the process, cytoplasmic components are enclosed in autophagosomes, which fuse with lysosomes for enzymatic degradation; flux therefore reflects pathway activity more accurately than autophagosome abundance alone, since accumulation can result from either increased formation or impaired clearance. In neuroscience, measuring autophagy flux helps assess neuronal protein and organelle quality control, including the handling of damaged mitochondria and misfolded proteins. These analyses support research into neurodegenerative disease mechanisms and potential therapeutic strategies.

Autophagy Flux - Related Videos

Research

JoVE Journal - Biology

Activating Autophagy by Aerobic Exercise in Mice

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Cited by 37 •

2017

Autophagy activation is beneficial in the prevention of a number of diseases. One of the physiological approaches to induce autophagy in vivo is physical exercise. Here we show how to activate autophagy by aerobic exercise and measure autophagy levels in mice.

Research

JoVE Journal - Immunology and Infection
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Use of Shigella flexneri to Study Autophagy-Cytoskeleton Interactions

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Cited by 14 •

2014

To counteract pathogen dissemination, host cells reorganize their cytoskeleton to compartmentalize bacteria and induce autophagy. Using Shigella infection of tissue culture cells, host and pathogen determinants underlying this process are identified and characterized. Using zebrafish models of Shigella infection, the role of discovered molecules and mechanisms are investigated in vivo.

In Situ Immunofluorescent Staining of Autophagy in Muscle Stem Cells

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Cited by 2 •

2017

Active autophagy is associated with productive muscle regeneration, which is essential for Muscle Stem Cell (MuSC) activation. Here, we provide a protocol for the in situ detection of LC3, an autophagy marker in MyoD-positive MuSCs of muscle tissue sections from control and injured mice.

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.

Study of Protein-protein Interactions in Autophagy Research

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Cited by 3 •

2017

Presented here are two antibody-based protein-protein interaction research techniques: immunofluorescence and immunoprecipitation. These techniques are suitable for studying physical interactions between proteins for the discovery of novel components of cellular signaling pathways and for understanding protein dynamics.

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