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Adipocyte P2Y14 receptors play a key role in regulating whole-body glucose and lipid homeostasis
Shanu Jain, Sai P. Pydi, Young-Hwan Jung, Mirko Scortichini, Efrat L. Kesner, Tadeusz P. Karcz, Donald N. Cook, Oksana Gavrilova, Jürgen Wess, Kenneth A. Jacobson
Shanu Jain, Sai P. Pydi, Young-Hwan Jung, Mirko Scortichini, Efrat L. Kesner, Tadeusz P. Karcz, Donald N. Cook, Oksana Gavrilova, Jürgen Wess, Kenneth A. Jacobson
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Research Article Metabolism

Adipocyte P2Y14 receptors play a key role in regulating whole-body glucose and lipid homeostasis

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Abstract

Obesity is the major driver of the worldwide epidemic in type 2 diabetes (T2D). In the obese state, chronically elevated plasma free fatty acid levels contribute to peripheral insulin resistance, which can ultimately lead to the development of T2D. For this reason, drugs that are able to regulate lipolytic processes in adipocytes are predicted to have considerable therapeutic potential. Gi-coupled P2Y14 receptor (P2Y14R; endogenous agonist, UDP-glucose) is abundantly expressed in both mouse and human adipocytes. Because activated Gi-type G proteins exert an antilipolytic effect, we explored the potential physiological relevance of adipocyte P2Y14Rs in regulating lipid and glucose homeostasis. Metabolic studies indicate that the lack of adipocyte P2Y14R enhanced lipolysis only in the fasting state, decreased body weight, and improved glucose tolerance and insulin sensitivity. Mechanistic studies suggested that adipocyte P2Y14R inhibits lipolysis by reducing lipolytic enzyme activity, including ATGL and HSL. In agreement with these findings, agonist treatment of control mice with a P2Y14R agonist decreased lipolysis, an effect that was sensitive to inhibition by a P2Y14R antagonist. In conclusion, we demonstrate that adipose P2Y14Rs were critical regulators of whole-body glucose and lipid homeostasis, suggesting that P2Y14R antagonists might be beneficial for the therapy of obesity and T2D.

Authors

Shanu Jain, Sai P. Pydi, Young-Hwan Jung, Mirko Scortichini, Efrat L. Kesner, Tadeusz P. Karcz, Donald N. Cook, Oksana Gavrilova, Jürgen Wess, Kenneth A. Jacobson

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Figure 3

Adipocyte-specific P2Y14R KO mice (adipo-P2Y14Δ/Δ) are protected from DIO, inflammation and obesity-linked metabolic deficits.

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Adipocyte-specific P2Y14R KO mice (adipo-P2Y14Δ/Δ) are protected from DI...
(A) mRNA expression levels of P2Y14R in mature adipocytes isolated from iWAT (n = 3/group), eWAT (n = 3/group), and BAT (n = 5/group) of HFD adipo-P2Y14Δ/Δ and control mice. (B) Body weight measurements of mice maintained on HFD (n = 8 or 9/group). (C) Body composition (lean and fat mass) of mice maintained on HFD (n = 6–10/group). (D) GTT (1 g /kg glucose, i.p.) (n = 7–11/group). (E) AUC for D. (F) ITT (1 U/kg insulin, i.p.) (n = 7–11/group). (G) AUC for F. (H) Fasting and fed blood glucose levels (n = 7–11/group). (I) Fasting and fed plasma insulin levels (n = 7–11/group). (J) Representative F4/80-stained sections of iWAT and eWAT from HFD adipo-P2Y14Δ/Δ and control mice. (K) Relative mRNA expression levels of inflammatory genes in iWAT from HFD adipo-P2Y14Δ/Δ and control mice (n = 4 or 5/group). (L) Relative mRNA expression levels of inflammatory genes in eWAT from HFD adipo-P2Y14Δ/Δ and control mice (n = 4–6/group). The expression of 18s rRNA was used to normalize qRT-PCR data. All data are expressed as mean ± SEM. *P < 0.05, **P < 0.01 (A, C, E, and G–L: 2-tailed Student’s t test; B, D, and F: 2-way ANOVA followed by Bonferroni’s post hoc test). All experiments were conducted on mice maintained on an HFD for at least 8 weeks. Scale bar: 150 µm. P2Y, purinergic; DIO, diet-induced obesity; HFD, high-fat diet; GTT, glucose tolerance test; ITT, insulin tolerance test.

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