Cftr Recycling

CFTR recycling is the cellular process that retrieves the cystic fibrosis transmembrane conductance regulator (CFTR) chloride channel from the plasma membrane and returns it to the cell surface, helping maintain epithelial ion transport. The process involves endocytosis, sorting through intracellular trafficking compartments, and delivery through recycling pathways, while some CFTR is directed toward degradation. By controlling the amount of functional CFTR at the apical membrane, recycling influences chloride and bicarbonate movement, water balance, and epithelial fluid secretion. Studying this pathway clarifies how trafficking defects contribute to cystic fibrosis and supports research into treatments that restore CFTR abundance and activity.

Cftr Recycling - Related Videos

Research

JoVE Journal - Biology

In Vitro Analysis of PDZ-dependent CFTR Macromolecular Signaling Complexes

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Cited by 7 •

2012

Cystic fibrosis transmembrane conductance regulator (CFTR), an epithelial chloride channel, has been reported to interact with various proteins and regulate important cellular processes; among them the CFTR PDZ motif-mediated interactions have been well documented. This protocol describes methods we developed to assemble a PDZ-dependent CFTR macromolecular signaling complex in vitro.

Education

JoVE Science Education - Psychology

Self-report vs. Behavioral Measures of Recycling

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2023

Source: Laboratories of Gary Lewandowski, Dave Strohmetz, and Natalie Ciarocco—Monmouth University One of the challenges in measuring an experimental variable is identifying the technique that will produce the more accurate measurement. The most common way to measure a dependent variable is self-report—asking the participant to describe his/her feelings, thoughts, or behaviors. Yet, people may not be honest. To truly know something about a participant, it may be necessary to see what they...

Functional Reconstitution and Channel Activity Measurements of Purified Wildtype and Mutant CFTR Protein

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Cited by 7 •

2015

Described here is a rapid and effective procedure for functional reconstitution of purified wild-type and mutant CFTR protein that preserves activity for this chloride channel, which is defective in Cystic Fibrosis. Iodide efflux from reconstituted proteoliposomes mediated by CFTR allows studies of channel activity and the effects of small molecules.

FM Dyes in Vesicle Recycling

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2023

FM dyes are a class of fluorescent molecules that has found important use in studying the vesicle recycling process. By virtue of a chemical structure, these molecules can insert themselves into the outer leaflet of phospholipid bilayer membranes. After membrane insertion, they are internalized into the cell via endocytosed vesicles, and released when these vesicles recycle back to the membrane. Since, these dyes fluoresce strongly in the hydrophobic environment within membranes and weakly in...

Analyzing Synaptic Vesicle Recycling and Fluorescent Dye Uptake in Drosophila Larvae

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2025

This video demonstrates a protocol to study synaptic vesicle recycling at neuromuscular junctions in channelrhodopsin-expressing Drosophila larvae using a fluorescent dye. Blue light activates the channelrhodopsins, causing calcium influx and synaptic vesicle exocytosis. The dye integrates into the neuronal membranes and is internalized during endocytosis, resulting in enhanced fluorescence. Further blue light stimulation induces exocytosis and dye release, which is shown by reduced...

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