Glycitin Targets the Orphan Receptor GPR3 to Promote Milk Fat Synthesis in Goat Mammary Epithelial Cells

Abstract Milk fat is a major determinant of dairy product quality, but the receptor mechanisms by which dietary isoflavones regulate mammary lipid metabolism remain unclear. We examined glycitin-induced lipid synthesis in goat mammary epithelial cells (GMECs) and the involvement of G protein-coupled receptor 3 (GPR3). Glycitin increased triglyceride accumulation, lipid droplet formation, and lipogenic gene expression. Docking and molecular dynamics suggested a plausible glycitin–GPR3 interaction, while the increase in cyclic adenosine monophosphate (cAMP) was weakened by GPR3 knockdown. Glycitin also increased GPR3 expression and reduced MYC-associated factor X (MAX)-associated transcriptional repression. GPR3 knockdown reduced triglycerides, diacylglycerols, and fatty acid esters of hydroxy fatty acids (FAHFAs). These findings identify GPR3-associated signaling as a potential mechanism linking glycitin to enhanced milk fat synthesis in GMECs.

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Publication Details

Journal
Journal of Agricultural and Food Chemistry
Published
2026-09-29
DOI
https://doi.org/10.1021/acs.jafc.6c00383
Primary Topic
Milk Quality and Mastitis in Dairy Cows
Type
article
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article

Glycitin Targets the Orphan Receptor GPR3 to Promote Milk Fat Synthesis in Goat Mammary Epithelial Cells

Huaiping Shi, Chu Chen, Runyu Yang, Liaoyu Fan et al.
Journal of Agricultural and Food Chemistry
Milk Quality and Mastitis in Dairy Cows
article

Glycitin Targets the Orphan Receptor GPR3 to Promote Milk Fat Synthesis in Goat Mammary Epithelial Cells

Huaiping Shi, Chu Chen, Runyu Yang, Liaoyu Fan, Hua Wang, Xiaoran Li
article en

Abstract

Abstract Milk fat is a major determinant of dairy product quality, but the receptor mechanisms by which dietary isoflavones regulate mammary lipid metabolism remain unclear. We examined glycitin-induced lipid synthesis in goat mammary epithelial cells (GMECs) and the involvement of G protein-coupled receptor 3 (GPR3). Glycitin increased triglyceride accumulation, lipid droplet formation, and lipogenic gene expression. Docking and molecular dynamics suggested a plausible glycitin–GPR3 interaction, while the increase in cyclic adenosine monophosphate (cAMP) was weakened by GPR3 knockdown. Glycitin also increased GPR3 expression and reduced MYC-associated factor X (MAX)-associated transcriptional repression. GPR3 knockdown reduced triglycerides, diacylglycerols, and fatty acid esters of hydroxy fatty acids (FAHFAs). These findings identify GPR3-associated signaling as a potential mechanism linking glycitin to enhanced milk fat synthesis in GMECs.

Journal of Agricultural and Food Chemistry
Northwest A&F University (CN)
Zero hunger
Openalex Percentile: Top 10%
Milk Quality and Mastitis in Dairy Cows
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