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Updated: Jun 13, 2026

Spatio-Temporal Manipulation of Small GTPase Activity at Subcellular Level and on Timescale of Seconds in Living Cells
Published on: March 9, 2012
Regulation of mTORC1 by the Rab and Arf GTPases
Li Li1, Eunjung Kim, Haixin Yuan
1Department of Pharmacology and Moores Cancer Center, University of California San Diego, La Jolla, California 92093, USA.
Abstract:
The mammalian target of rapamycin (mTOR) is a key cell growth regulator, which forms two distinct functional complexes (mTORC1 and mTORC2). mTORC1, which is directly inhibited by rapamycin, promotes cell growth by stimulating protein synthesis and inhibiting autophagy. mTORC1 is regulated by a wide range of extra- and intracellular signals, including growth factors, nutrients, and energy levels. Precise regulation of mTORC1 is important for normal cellular physiology and development, and dysregulation of mTORC1 contributes to hypertrophy and tumorigenesis. In this study, we screened Drosophila small GTPases for their function in TORC1 regulation and found that TORC1 activity is regulated by members of the Rab and Arf family GTPases, which are key regulators of intracellular vesicle trafficking. In mammalian cells, uncontrolled activation of Rab5 and Arf1 strongly inhibit mTORC1 activity. Interestingly, the effect of Rab5 and Arf1 on mTORC1 is specific to amino acid stimulation, whereas glucose-induced mTORC1 activation is not blocked by Rab5 or Arf1. Similarly, active Rab5 selectively inhibits mTORC1 activation by Rag GTPases, which are involved in amino acid signaling, but does not inhibit the effect of Rheb, which directly binds and activates mTORC1. Our data demonstrate a key role of Rab and Arf family small GTPases and intracellular trafficking in mTORC1 activation, particularly in response to amino acids.
Insights
Small GTPases, Rab and Arf, regulate the mammalian target of rapamycin complex 1 (mTORC1) pathway, particularly amino acid signaling. This discovery highlights the role of intracellular trafficking in cell growth control.
Area of Science:
- Cell Biology
- Molecular Biology
- Biochemistry
Background:
- The mammalian target of rapamycin (mTOR) is a central regulator of cell growth, existing in two complexes: mTORC1 and mTORC2.
- mTORC1 promotes protein synthesis and inhibits autophagy, crucial for cellular physiology, but its dysregulation contributes to diseases like cancer.
Purpose of the Study:
- To investigate the role of Drosophila small GTPases in regulating mTORC1 activity.
- To identify specific GTPase families involved in controlling mTORC1 signaling pathways.
Main Methods:
- Screening of Drosophila small GTPases for their impact on TORC1 regulation.
- Testing the effects of activated Rab5 and Arf1 on mTORC1 activity in mammalian cells.
- Analyzing the specificity of Rab5 and Arf1 inhibition on different mTORC1 stimulation pathways (amino acids vs. glucose).
Main Results:
- Members of the Rab and Arf family GTPases, regulators of vesicle trafficking, were found to modulate TORC1 activity.
- In mammalian cells, activated Rab5 and Arf1 significantly inhibit mTORC1.
- This inhibition is specific to amino acid-induced mTORC1 activation, not affecting glucose-induced activation.
- Rab5 selectively blocks mTORC1 activation by Rag GTPases but not by Rheb.
Conclusions:
- Rab and Arf family small GTPases play a critical role in mTORC1 activation.
- Intracellular trafficking mechanisms are integral to the regulation of mTORC1 signaling, especially in response to amino acids.
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