Arisawa_2023_Nutrients_16_

Reference

Title : GPER\/PKA-Dependent Enhancement of Hormone-Sensitive Lipase Phosphorylation in 3T3-L1 Adipocytes by Piceatannol - Arisawa_2023_Nutrients_16_
Author(s) : Arisawa K , Matsuoka A , Ozawa N , Ishikawa T , Ichi I , Fujiwara Y
Ref : Nutrients , 16 : , 2023
Abstract :

We previously reported that piceatannol (PIC) had an anti-obesity effect only in ovariectomized (OVX) postmenopausal obesity mice. PIC was found to induce the phosphorylation of hormone-sensitive lipase (pHSL) in OVX mice. To elucidate the mechanism by which PIC activates HSL, we investigated the effect of PIC using 3T3-L1 adipocytes. PIC induced HSL phosphorylation at Ser563 in 3T3-L1 cells, as in vivo experiments showed. pHSL (Ser563) is believed to be activated through the beta-adrenergic receptor (beta-AR) and protein kinase A (PKA) pathways; however, the addition of a selective inhibitor of beta-AR did not inhibit the effect of PIC. The addition of a PKA inhibitor with PIC blocked pHSL (Ser563), suggesting that the effects are mediated by PKA in a different pathway than beta-AR. The addition of G15, a selective inhibitor of the G protein-coupled estrogen receptor (GPER), reduced the activation of HSL by PIC. Furthermore, PIC inhibited insulin signaling and did not induce pHSL (Ser565), which represents its inactive form. These results suggest that PIC acts as a phytoestrogen and phosphorylates HSL through a novel pathway that activates GPER and its downstream PKA, which may be one of the inhibitory actions of PIC on fat accumulation in estrogen deficiency.

PubMedSearch : Arisawa_2023_Nutrients_16_
PubMedID: 38201867

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Citations formats

Arisawa K, Matsuoka A, Ozawa N, Ishikawa T, Ichi I, Fujiwara Y (2023)
GPER\/PKA-Dependent Enhancement of Hormone-Sensitive Lipase Phosphorylation in 3T3-L1 Adipocytes by Piceatannol
Nutrients 16 :

Arisawa K, Matsuoka A, Ozawa N, Ishikawa T, Ichi I, Fujiwara Y (2023)
Nutrients 16 :