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Naturally occurring HCA1 missense mutations result in loss of function: potential impact on lipid deposition
Jamie R Doyle1, Jacqueline M Lane1, Martin Beinborn1
1Molecular Cardiology Research Institute, Tufts Medical Center, Boston, MA.
Abstract:
The hydroxy-carboxylic acid receptor (HCA1) is a G protein-coupled receptor that is highly expressed on adipocytes and considered a potential target for the treatment of dyslipidemia. In the current study, we investigated the pharmacological properties of naturally occurring variants in this receptor (H43Q, A110V, S172L, and D253H). After transient expression of these receptors into human embryonic kidney 293 cells, basal and ligand-induced signaling were assessed using luciferase reporter gene assays. The A110V, S172L, and D253 variants showed reduced basal activity; the S172L mutant displayed a decrease in potency to the endogenous ligand L-lactate. Both the S172L and D253H variants also showed impaired cell surface expression, which may in part explain the reduced activity of these receptors. The impact of a loss in HCA1 function on lipid accumulation was investigated in the adipocyte cell line, OP9. In these cells, endogenous HCA1 transcript levels rapidly increased and reached maximal levels 3 days after the addition of differentiation media. Knockdown of HCA1 using siRNA resulted in an increase in lipid accumulation as assessed by quantification of Nile Red staining and TLC analysis. Our data suggest that lipid homeostasis may be altered in carriers of selected HCA1 missense variants.
Insights
Naturally occurring variants of the hydroxy-carboxylic acid receptor 1 (HCA1) can impair its function, potentially altering lipid homeostasis. This suggests HCA1 variants may impact metabolic health.
Area of Science:
- Pharmacology
- Molecular Biology
- Metabolic Research
Background:
- The hydroxy-carboxylic acid receptor 1 (HCA1) is a G protein-coupled receptor found on adipocytes.
- HCA1 is a potential therapeutic target for treating dyslipidemia.
Purpose of the Study:
- To investigate the pharmacological properties of naturally occurring HCA1 variants (H43Q, A110V, S172L, D253H).
- To assess the impact of HCA1 variants on lipid homeostasis in adipocytes.
Main Methods:
- Transiently expressed HCA1 variants in human embryonic kidney 293 cells.
- Assessed receptor signaling using luciferase reporter gene assays.
- Investigated HCA1 function in OP9 adipocytes using siRNA knockdown and lipid accumulation assays.
Main Results:
- A110V, S172L, and D253H variants exhibited reduced basal activity.
- S172L variant showed decreased potency to L-lactate.
- S172L and D253H variants had impaired cell surface expression.
- HCA1 knockdown in adipocytes increased lipid accumulation.
Conclusions:
- Selected HCA1 missense variants display altered pharmacological properties and impaired cell surface expression.
- Loss of HCA1 function is associated with increased lipid accumulation in adipocytes.
- Lipid homeostasis may be affected in individuals carrying specific HCA1 variants.
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