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FSH increases lipid droplet content by regulating the expression of genes related to lipid storage in Rat Sertoli cells. | LitMetric

FSH increases lipid droplet content by regulating the expression of genes related to lipid storage in Rat Sertoli cells.

Mol Cell Endocrinol

Centro de Investigaciones Endocrinológicas, "Dr César Bergadá", CONICET-FEI-División de Endocrinología, Hospital de Niños Ricardo Gutiérrez, Argentina. Electronic address:

Published: January 2025

AI Article Synopsis

  • * The study investigates how follicle-stimulating hormone (FSH) influences lipid storage and fat-related gene expression in SCs, using cultured SCs from 20-day-old rats.
  • * Results showed that FSH increased lipid droplet and triacylglyceride levels in SCs and activated specific genes, suggesting it regulates lipid storage through the cAMP/PKA signaling pathway to meet energy needs.

Article Abstract

Sertoli cells (SCs) are essential for appropriate spermatogenesis. From a metabolic standpoint, they catabolize glucose and provide germ cells with lactate, which is their main energy source. SCs also oxidize fatty acids (FAs), which are stored as triacylglycerides (TAGs) within lipid droplets (LDs), to fulfill their own energy requirements. On the other hand, it has been demonstrated that FSH regulates some of SCs functions, but little is known about its effect on lipid metabolism. In the present study, we aimed to analyze FSH-mediated regulation of (1) lipid storage in LDs and (2) the expression of genes involved in FAs activation and TAG synthesis and storage in SCs. SCs obtained from 20-day-old rats were cultured for different incubation periods with FSH (100 ng/ml). It was observed that FSH increased LD content and TAG levels in SCs. There were also increments in the expression of Plin1, Fabp5, Acsl1, Acsl4, Gpat3, and Dgat1, which suggests that these proteins may mediate the increase in TAGs and LDs elicited by FSH. Regarding the signaling involved in FSH actions, it was observed that dbcAMP increased LD, and H89, a PKA inhibitor, inhibited FSH stimulus. Also, dbcAMP increased Plin2, Fabp5, Acsl1, Acsl4, and Dgat1 mRNA levels, confirming a role of the cAMP/PKA pathway in the regulation of lipid storage in SCs. Altogether, these results suggest that FSH, via the cAMP/PKA pathway, regulates lipid storage in SCs ensuring the availability of substrates to satisfy their energy requirements.

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Source
http://dx.doi.org/10.1016/j.mce.2024.112403DOI Listing

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