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Updated: Jun 3, 2026

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Published on: May 28, 2011
Rictor/TORC2 regulates fat metabolism, feeding, growth, and life span in Caenorhabditis elegans
Alexander A Soukas1, Elizabeth A Kane, Christopher E Carr
1Department of Genetics, Harvard Medical School, Boston, Massachusetts 02114, USA.
Abstract:
Rictor is a component of the target of rapamycin complex 2 (TORC2). While TORC2 has been implicated in insulin and other growth factor signaling pathways, the key inputs and outputs of this kinase complex remain unknown. We identified mutations in the Caenorhabditis elegans homolog of rictor in a forward genetic screen for increased body fat. Despite high body fat, rictor mutants are developmentally delayed, small in body size, lay an attenuated brood, and are short-lived, indicating that Rictor plays a critical role in appropriately partitioning calories between long-term energy stores and vital organismal processes. Rictor is also necessary to maintain normal feeding on nutrient-rich food sources. In contrast to wild-type animals, which grow more rapidly on nutrient-rich bacterial strains, rictor mutants display even slower growth, a further reduced body size, decreased energy expenditure, and a dramatically extended life span, apparently through inappropriate, decreased consumption of nutrient-rich food. Rictor acts directly in the intestine to regulate fat mass and whole-animal growth. Further, the high-fat phenotype of rictor mutants is genetically dependent on akt-1, akt-2, and serum and glucocorticoid-induced kinase-1 (sgk-1). Alternatively, the life span, growth, and reproductive phenotypes of rictor mutants are mediated predominantly by sgk-1. These data indicate that Rictor/TORC2 is a nutrient-sensitive complex with outputs to AKT and SGK to modulate the assessment of food quality and signal to fat metabolism, growth, feeding behavior, reproduction, and life span.
Insights
Mutations in Rictor, a target of rapamycin complex 2 (TORC2) component, disrupt nutrient sensing and fat metabolism in C. elegans. Rictor regulates feeding behavior, growth, and lifespan by signaling through AKT and SGK pathways.
Area of Science:
- Molecular Biology
- Genetics
- Aging Research
Background:
- The target of rapamycin complex 2 (TORC2) is involved in growth factor signaling, but its specific inputs and outputs are not fully understood.
- Rictor is a key component of TORC2, a protein complex crucial for cellular regulation.
Purpose of the Study:
- To investigate the role of Rictor in nutrient sensing, energy partitioning, and organismal health.
- To identify the downstream signaling pathways regulated by Rictor/TORC2.
Main Methods:
- Forward genetic screen in Caenorhabditis elegans to identify mutations affecting body fat.
- Analysis of phenotypic consequences of rictor mutations, including body size, reproduction, lifespan, and feeding behavior.
- Genetic analysis to determine the dependence of rictor mutant phenotypes on downstream kinases AKT and SGK.
Main Results:
- Rictor mutants exhibit increased body fat but are developmentally delayed, smaller, less fecund, and short-lived.
- Rictor is essential for normal feeding behavior on nutrient-rich food, leading to slower growth and extended lifespan in mutants.
- Rictor acts in the intestine to control fat mass and growth, with its high-fat phenotype dependent on AKT-1, AKT-2, and SGK-1.
- Lifespan, growth, and reproductive phenotypes are primarily mediated by SGK-1.
Conclusions:
- Rictor/TORC2 functions as a nutrient-sensitive complex that modulates food quality assessment and signals to metabolic and developmental pathways.
- Rictor regulates fat metabolism, growth, feeding behavior, reproduction, and lifespan through outputs to AKT and SGK kinases.
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