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Updated: Nov 5, 2025

Author Spotlight: Image-Based Methods to Study Membrane Trafficking Events in Stomatal Lineage Cells
Published on: May 12, 2023
mTOR controls endoplasmic reticulum-Golgi apparatus trafficking of VSVg in specific cell types
Alicja Koscielny1, Ewa Liszewska1, Katarzyna Machnicka1
1International Institute of Molecular and Cell Biology, 4 Ks. Trojdena St., 04-421, Warsaw, Poland.
Background:
Mammalian/mechanistic target of rapamycin (mTOR) complexes are essential for cell proliferation, growth, differentiation, and survival. mTORC1 hyperactivation occurs in the tuberous sclerosis complex (TSC). mTORC1 localizes to the surface of lysosomes, where Rheb activates it. However, mTOR was also found on the endoplasmic reticulum (ER) and Golgi apparatus (GA). Recent studies showed that the same inputs regulate ER-to-GA cargo transport and mTORC1 (e.g., the level of amino acids or energy status of the cell). Nonetheless, it remains unknown whether mTOR contributes to the regulation of cargo passage through the secretory pathway.
Methods:
The retention using selective hooks (RUSH) approach was used to image movement of model cargo (VSVg) between the ER and GA in various cell lines in which mTOR complexes were inhibited. We also investigated VSVg trafficking in TSC patient fibroblasts.
Results:
We found that mTOR inhibition led to the overall enhancement of VSVg transport through the secretory pathway in PC12 cells and primary human fibroblasts. Also, in TSC1-deficient cells, VSVg transport was enhanced.
Conclusions:
Altogether, these data indicate the involvement of mTOR in the regulation of ER-to-GA cargo transport and suggest that impairments in exocytosis may be an additional cellular process that is disturbed in TSC.
Insights
Mechanistic target of rapamycin (mTOR) regulates cargo transport between the ER and Golgi. Inhibiting mTOR enhances this transport, suggesting new insights into tuberous sclerosis complex (TSC) cellular defects.
Area of Science:
- Cellular Biology
- Molecular Biology
- Biochemistry
Background:
- Mammalian target of rapamycin (mTOR) complexes are crucial for cell growth and survival.
- mTORC1 hyperactivation is observed in tuberous sclerosis complex (TSC).
- mTOR's presence on ER and Golgi suggests a role in secretory pathway regulation.
Discussion:
- Investigated mTOR's role in ER-to-Golgi cargo transport using the RUSH method.
- Examined cargo trafficking in various cell lines with inhibited mTOR complexes.
- Analyzed VSVg trafficking in TSC patient fibroblasts.
Key Insights:
- mTOR inhibition enhances VSVg transport through the secretory pathway.
- Enhanced VSVg transport was observed in PC12 cells and human fibroblasts.
- VSVg transport was also enhanced in TSC1-deficient cells.
Outlook:
- mTOR involvement in ER-to-Golgi cargo transport is indicated.
- Impaired exocytosis may be a cellular process disrupted in TSC.
- Further research into mTOR's regulatory mechanisms in the secretory pathway is warranted.
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