Plasma membrane domains enriched in cortical endoplasmic reticulum function as membrane protein trafficking hubs

PD Fox, CJ Haberkorn, AV Weigel… - Molecular biology of …, 2013 - Am Soc Cell Biol
PD Fox, CJ Haberkorn, AV Weigel, JL Higgins, EJ Akin, MJ Kennedy, D Krapf, MM Tamkun
Molecular biology of the cell, 2013Am Soc Cell Biol
In mammalian cells, the cortical endoplasmic reticulum (cER) is a network of tubules and
cisterns that lie in close apposition to the plasma membrane (PM). We provide evidence that
PM domains enriched in underlying cER function as trafficking hubs for insertion and
removal of PM proteins in HEK 293 cells. By simultaneously visualizing cER and various
transmembrane protein cargoes with total internal reflectance fluorescence microscopy, we
demonstrate that the majority of exocytotic delivery events for a recycled membrane protein …
In mammalian cells, the cortical endoplasmic reticulum (cER) is a network of tubules and cisterns that lie in close apposition to the plasma membrane (PM). We provide evidence that PM domains enriched in underlying cER function as trafficking hubs for insertion and removal of PM proteins in HEK 293 cells. By simultaneously visualizing cER and various transmembrane protein cargoes with total internal reflectance fluorescence microscopy, we demonstrate that the majority of exocytotic delivery events for a recycled membrane protein or for a membrane protein being delivered to the PM for the first time occur at regions enriched in cER. Likewise, we observed recurring clathrin clusters and functional endocytosis of PM proteins preferentially at the cER-enriched regions. Thus the cER network serves to organize the molecular machinery for both insertion and removal of cell surface proteins, highlighting a novel role for these unique cellular microdomains in membrane trafficking.
Am Soc Cell Biol
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