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Control of TSC2-Rheb signaling axis by arginine regulates mTORC1 activity
Bernadette Carroll1, Dorothea Maetzel2, Oliver Dk Maddocks3
1Institute for Cell and Molecular Biosciences, Newcastle University, Newcastle upon Tyne, United Kingdom.
Abstract:
The mammalian target of rapamycin complex 1 (mTORC1) is the key signaling hub that regulates cellular protein homeostasis, growth, and proliferation in health and disease. As a prerequisite for activation of mTORC1 by hormones and mitogens, there first has to be an available pool of intracellular amino acids. Arginine, an amino acid essential during mammalian embryogenesis and early development is one of the key activators of mTORC1. Herein, we demonstrate that arginine acts independently of its metabolism to allow maximal activation of mTORC1 by growth factors via a mechanism that does not involve regulation of mTORC1 localization to lysosomes. Instead, arginine specifically suppresses lysosomal localization of the TSC complex and interaction with its target small GTPase protein, Rheb. By interfering with TSC-Rheb complex, arginine relieves allosteric inhibition of Rheb by TSC. Arginine cooperates with growth factor signaling which further promotes dissociation of TSC2 from lysosomes and activation of mTORC1. Arginine is the main amino acid sensed by the mTORC1 pathway in several cell types including human embryonic stem cells (hESCs). Dependence on arginine is maintained once hESCs are differentiated to fibroblasts, neurons, and hepatocytes, highlighting the fundamental importance of arginine-sensing to mTORC1 signaling. Together, our data provide evidence that different growth promoting cues cooperate to a greater extent than previously recognized to achieve tight spatial and temporal regulation of mTORC1 signaling.
Insights
Arginine activates mTORC1 signaling, crucial for cell growth, by suppressing the TSC complex
Area of Science:
- Cellular Biology
- Molecular Signaling
- Biochemistry
Background:
- Mammalian target of rapamycin complex 1 (mTORC1) regulates protein homeostasis, growth, and proliferation.
- mTORC1 activation requires intracellular amino acids, with arginine being a key activator.
- Arginine is essential for mammalian embryogenesis and early development.
Purpose of the Study:
- To elucidate the mechanism by which arginine activates mTORC1.
- To investigate arginine's role in mTORC1 activation independent of its metabolism.
- To understand arginine's interaction with growth factor signaling pathways.
Main Methods:
- Investigated arginine's effect on mTORC1 activation by growth factors.
- Examined the role of arginine in the localization of the TSC complex and Rheb.
- Studied arginine sensing by mTORC1 in various human cell types, including hESCs.
Main Results:
- Arginine activates mTORC1 independently of its metabolism.
- Arginine suppresses lysosomal localization of the TSC complex, relieving Rheb inhibition.
- Arginine cooperates with growth factors to activate mTORC1, with arginine being the primary sensed amino acid.
- Arginine dependence is maintained in differentiated cells derived from hESCs.
Conclusions:
- Arginine's mechanism of mTORC1 activation involves suppressing the TSC-Rheb interaction at lysosomes.
- Arginine and growth factors cooperate for precise mTORC1 regulation.
- Arginine sensing is fundamental to mTORC1 signaling across various cell types and developmental stages.
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