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Isolation and Differentiation of Primary White and Brown Preadipocytes from Newborn Mice
Published on: January 25, 2021
DEPTOR loss impairs brown adipocyte development in vitro but has limited impacts in mice
Charles Colas1, Mathilde Mouchiroud1, Manal Al Dow1
1Centre de recherche de l'Institut universitaire de cardiologie et de pneumologie de Québec - Université Laval (CRIUCPQ), 2725 Chemin Ste-Foy, Québec, QC, Canada, G1V 4G5; Centre de recherche sur le cancer de l'Université Laval, Université Laval, 9 rue McMahon, Québec, QC, Canada, G1R 3S3.
Objectives:
The mechanistic target of rapamycin (mTOR) is a serine/threonine kinase that regulates growth and metabolism. In mice, activation of mTOR controls cold adaptation by promoting the recruitment and the activation of brown adipose tissue (BAT). DEP-domain containing mTOR-interacting protein (DEPTOR) interacts with mTOR to modulate its activity. Whether DEPTOR levels are modulated by cold in BAT and whether this protein regulates brown adipocyte development and thermogenic activation has never been tested.
Methods:
DEPTOR levels were measured in mouse tissues upon cold exposure and in brown preadipocytes following the induction of adipogenesis. Lentiviruses expressing short-hairpin RNA were used to repress DEPTOR expression in brown preadipocytes in vitro. Conditional deletion of DEPTOR in brown preadipocytes and in mature brown fat cells was achieved by crossing DEPTOR floxed mice with either Myf5-Cre or Ucp1-CreERT2 mice. These animals were exposed to cold and extensively phenotyped.
Results:
DEPTOR is highly expressed in BAT and its levels are induced by chronic cold exposure, a condition that triggers BAT expansion and activation. Supporting a role for DEPTOR in brown fat cell recruitment, we found that DEPTOR is induced during brown adipocyte development and that its depletion impairs adipogenesis in vitro. This adipogenic lesion was associated with defects in both Akt activation and the expression of key adipogenic regulators. Conditional deletion of DEPTOR in brown preadipocytes or mature brown fat cells did not impact BAT recruitment and thermogenesis in mice but slightly reduced the expression of adipogenic and lipogenic genes.
Conclusions:
DEPTOR is highly expressed in BAT and its levels are dynamically regulated during brown fat cell development and upon cold exposure. Although DEPTOR depletion severely represses brown fat adipogenesis in vitro, its deletion is dispensable for BAT development, recruitment, and thermogenic activation in mice.
Insights
DEP-domain containing mTOR-interacting protein (DEPTOR) is induced by cold and is crucial for brown fat cell development in vitro. However, DEPTOR is not essential for brown adipose tissue (BAT) recruitment or thermogenesis in mice.
Area of Science:
- Metabolism and endocrinology
- Cellular and molecular biology
Background:
- The mechanistic target of rapamycin (mTOR) pathway regulates growth and metabolism.
- Brown adipose tissue (BAT) activation is crucial for cold adaptation.
- DEP-domain containing mTOR-interacting protein (DEPTOR) modulates mTOR activity.
Purpose of the Study:
- To investigate the role of DEPTOR in brown adipose tissue (BAT) during cold adaptation.
- To determine if DEPTOR levels are modulated by cold exposure in BAT.
- To assess DEPTOR's impact on brown adipocyte development and thermogenic activation.
Main Methods:
- Measured DEPTOR levels in mouse tissues and brown preadipocytes.
- Utilized lentiviruses for DEPTOR knockdown in vitro.
- Generated conditional DEPTOR knockout mice (Myf5-Cre and Ucp1-CreERT2) for in vivo studies.
- Phenotyped mice following cold exposure.
Main Results:
- DEPTOR is highly expressed in BAT and induced by chronic cold exposure.
- DEPTOR is induced during brown adipocyte development and its depletion impairs adipogenesis in vitro.
- Conditional DEPTOR deletion in brown adipocytes did not affect BAT recruitment or thermogenesis in vivo.
- DEPTOR deletion slightly reduced adipogenic and lipogenic gene expression.
Conclusions:
- DEPTOR expression is dynamic in BAT during development and cold exposure.
- While DEPTOR is critical for brown adipogenesis in vitro, it is dispensable for in vivo BAT development, recruitment, and thermogenesis.
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