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Updated: Feb 28, 2026

Measuring the Rate of Lipolysis in Ex Vivo Murine Adipose Tissue and Primary Preadipocytes Differentiated In Vitro
Published on: March 17, 2023
The free fatty acid receptor FFAR4 regulates CD36 protein expression through a PCSK9-dependent pathway - The
Ryo Karakawa1, Takuya Hayashi1, Yui Hirota2
1Graduate School of Advanced Health Sciences, Saga University, Japan.
Abstract:
Brown adipose tissue plays a crucial role in systemic energy homeostasis by taking up and metabolizing large amounts of fatty acids. The fatty acid sensor FFAR4 and the transporter CD36 are key proteins in this process, but their functional interaction has not been fully characterized. In this study, we generated FFAR4-deficient mouse brown adipocyte cell lines and found that this chronic deficiency of FFAR4 led to a compensatory increase in CD36 mRNA expression. However, subsequent experiments using transient overexpression systems revealed a distinct, rapid post-translational regulation mechanism: FFAR4 activation markedly reduced CD36 protein levels. In addition, we identified the secreted enzyme PCSK9 as a key mediator. We demonstrated that FFAR4 promotes the maturation and enhances the secretion of PCSK9, an effect driven by a promotion of its transcription. The secreted PCSK9 then induced the degradation of CD36 through both autocrine and paracrine pathways. This newly identified FFAR4-PCSK9-CD36 axis appears to function as a sophisticated negative feedback loop, or "emergency brake," protecting brown adipocytes against excessive fatty acid uptake and lipotoxicity. These findings reveal a critical mechanism for the maintenance of lipid homeostasis and identify a promising new therapeutic target for metabolic diseases.
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