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The contrasting roles of PPAR灌 and PPAR款 in regulating the metabolic switch between oxidation and storage of fats in white adipose tissue

机译:PPAR灌装和PPAR款在调节白色脂肪组织中脂肪氧化和储存之间的代谢转换中的对比作用

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Background: The nuclear receptors peroxisome proliferator-activated receptor g (PPARg) and peroxisome proliferator-activated receptor δ (PPARδ) play central roles in regulating metabolism in adipose tissue, as well as being targets for the treatment of insulin resistance. While the role of PPARg in regulating insulin sensitivity has been well defined, research into PPARδ has been limited until recently due to a scarcity of selective PPARδ agonists. Results: The metabolic effects of PPARg and PPARδ activation have been examined in vivo in white adipose tissue from ob/ob mice and in vitro in cultured 3T3-L1 adipocytes using 1 H nuclear magnetic resonance spectroscopy and mass spectrometry metabolomics to understand the receptors' contrasting roles. These steady state measurements were supplemented with 13 C-stable isotope substrate labeling to assess fluxes, in addition to respirometry and transcriptomic microarray analysis. The metabolic effects of the receptors were readily distinguished, with PPARg activation characterized by increased fat storage, synthesis and elongation, while PPARδ activation caused increased fatty acid b-oxidation, tricarboxylic acid cycle rate and oxidation of extracellular branch chain amino acids. Stimulated glycolysis and increased fatty acid desaturation were common pathways for the agonists. Conclusions: PPARg and PPARδ restore insulin sensitivity through varying mechanisms. PPARδ activation increases total oxidative metabolism in white adipose tissue, a tissue not traditionally thought of as oxidative. However, the increased metabolism of branch chain amino acids may provide a mechanism for muscle atrophy, which has been linked to activation of this nuclear receptor. PPARδ has a role as an anti-obesity target and as an anti-diabetic, and hence may target both the cause and consequences of dyslipidemia.
机译:背景:核受体过氧化物酶体增殖物激活受体g(PPARg)和过氧化物酶体增殖物激活受体δ(PPARδ)在调节脂肪组织的代谢中起着核心作用,并且是治疗胰岛素抵抗的靶点。尽管已经明确定义了PPARg在调节胰岛素敏感性中的作用,但由于缺乏选择性PPARδ激动剂,对PPARδ的研究一直很有限。结果:已使用1 H核磁共振波谱和质谱代谢组学研究了ob / ob小鼠的白色脂肪组织中的PPARg和PPARδ活化的体内代谢作用以及体外培养的3T3-L1脂肪细胞中的PPARg和PPARδ活化作用,以了解受体的对比角色。除了呼吸测定法和转录组微阵列分析外,这些稳态测量还补充有13 C稳定同位素同位素底物标签以评估通量。受体的代谢作用易于区分,PPARg激活的特征是增加了脂肪的存储,合成和伸长,而PPARδ激活导致了脂肪酸b-氧化,三羧酸循环速率和细胞外分支链氨基酸的氧化增加。激动剂的常见途径是刺激糖酵解和增加脂肪酸去饱和度。结论:PPARg和PPARδ通过多种机制恢复了胰岛素敏感性。 PPARδ激活可增加白色脂肪组织中的总氧化代谢,该组织传统上不被认为具有氧化性。但是,支链氨基酸代谢的增加可能为肌肉萎缩提供了一种机制,该机制已与该核受体的活化有关。 PPARδ具有抗肥胖目标和抗糖尿病作用,因此可以靶向血脂异常的原因和后果。

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