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Updated: Jul 30, 2025

Measuring the Rate of Lipolysis in Ex Vivo Murine Adipose Tissue and Primary Preadipocytes Differentiated In Vitro
Published on: March 17, 2023
Sympathetic tone dictates the impact of lipolysis on FABP4 secretion
Kacey J Prentice1, Alexandra Lee1, Paulina Cedillo1
1Department of Molecular Metabolism; Sabri Ülker Center for Metabolic Research, Harvard T.H. Chan School of Public Health, Boston, MA, USA.
Abstract:
Levels of circulating fatty acid binding protein 4 (FABP4) protein are strongly associated with obesity and metabolic disease in both mice and humans, and secretion is stimulated by β-adrenergic stimulation both in vivo and in vitro. Previously, lipolysis-induced FABP4 secretion was found to be significantly reduced upon pharmacological inhibition of adipose triglyceride lipase (ATGL) and was absent from adipose tissue explants from mice specifically lacking ATGL in their adipocytes (ATGLAdpKO). Here, we find that upon activation of β-adrenergic receptors in vivo, ATGLAdpKO mice unexpectedly exhibited significantly higher levels of circulating FABP4 as compared with ATGLfl/fl controls, despite no corresponding induction of lipolysis. We generated an additional model with adipocyte-specific deletion of both FABP4 and ATGL (ATGL/FABP4AdpKO) to evaluate the cellular source of this circulating FABP4. In these animals, there was no evidence of lipolysis-induced FABP4 secretion, indicating that the source of elevated FABP4 levels in ATGLAdpKO mice was indeed from the adipocytes. ATGLAdpKO mice exhibited significantly elevated corticosterone levels, which positively correlated with plasma FABP4 levels. Pharmacological inhibition of sympathetic signaling during lipolysis using hexamethonium or housing mice at thermoneutrality to chronically reduce sympathetic tone significantly reduced FABP4 secretion in ATGLAdpKO mice compared with controls. Therefore, activity of a key enzymatic step of lipolysis mediated by ATGL, per se, is not required for in vivo stimulation of FABP4 secretion from adipocytes, which can be induced through sympathetic signaling.
Insights
Fatty acid binding protein 4 (FABP4) secretion from adipocytes is stimulated by sympathetic signaling, independent of adipose triglyceride lipase (ATGL) activity. This finding advances understanding of metabolic disease regulation.
Area of Science:
- Metabolic disease
- Adipocyte biology
- Endocrinology
Background:
- Circulating fatty acid binding protein 4 (FABP4) levels correlate with obesity and metabolic dysfunction.
- FABP4 secretion is typically linked to lipolysis and stimulated by beta-adrenergic signaling.
- Adipose triglyceride lipase (ATGL) is considered a key enzyme in lipolysis-induced FABP4 secretion.
Purpose of the Study:
- To investigate the role of ATGL in FABP4 secretion in vivo.
- To determine if lipolysis is essential for beta-adrenergic-stimulated FABP4 release.
- To identify the signaling pathways regulating FABP4 secretion independent of ATGL.
Main Methods:
- Utilized adipocyte-specific ATGL knockout (ATGLAdpKO) mice and double knockout (ATGL/FABP4AdpKO) mice.
- Administered beta-adrenergic receptor agonists and sympathetic inhibitors (hexamethonium).
- Assessed lipolysis, FABP4 levels, and corticosterone in plasma and adipose tissue.
Main Results:
- ATGLAdpKO mice showed increased circulating FABP4 upon beta-adrenergic stimulation, without increased lipolysis.
- FABP4 originated from adipocytes, as shown in ATGL/FABP4AdpKO mice.
- Elevated corticosterone levels correlated with plasma FABP4 in ATGLAdpKO mice.
- Sympathetic inhibition or reduced sympathetic tone (thermoneutrality) decreased FABP4 secretion in ATGLAdpKO mice.
Conclusions:
- ATGL activity is not required for beta-adrenergic-induced FABP4 secretion from adipocytes.
- Sympathetic signaling directly stimulates FABP4 secretion, independent of lipolysis.
- This provides new insights into the regulation of FABP4 in metabolic health and disease.
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