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首页> 外文期刊>Journal of Lipid Research >Berardinelli-Seip congenital lipodystrophy 2 regulates adipocyte lipolysis, browning, and energy balance in adult animals
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Berardinelli-Seip congenital lipodystrophy 2 regulates adipocyte lipolysis, browning, and energy balance in adult animals

机译:Berardinelli-Seip先天性脂肪营养不良2调节成年动物的脂肪细胞脂解,褐变和能量平衡

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Mutations in BSCL2/SEIPIN cause Berardinelli-Seip congenital lipodystrophy type 2 (BSCL2), but the mechanisms whereby Bscl2 regulates adipose tissue function are unclear. Here, we generated adipose tissue (mature) Bscl2 knockout (Ad-mKO) mice, in which Bscl2 was specifically ablated in adipocytes of adult animals, to investigate the impact of acquired Bscl2 deletion on adipose tissue function and energy balance. Ad-mKO mice displayed reduced adiposity and were protected against high fat diet-induced obesity, but not insulin resistance or hepatic steatosis. Gene expression profiling and biochemical assays revealed increased lipolysis and fatty acid oxidation in white adipose tissue (WAT) and brown adipose tissue , as well as browning of WAT, owing to induction of cAMP/protein kinase A signaling upon Bscl2 deletion. Interestingly, Bscl2 deletion reduced food intake and downregulated adipose {beta}3-adrenergic receptor (ADRB3) expression. Impaired ADRB3 signaling partially offsets upregulated browning-induced energy expenditure and thermogenesis in Ad-mKO mice housed at ambient temperature. However, this counter-regulatory response was abrogated under thermoneutral conditions, resulting in even greater body mass loss in Ad-mKO mice. These findings suggest that Bscl2 regulates adipocyte lipolysis and {beta}-adrenergic signaling to produce complex effects on adipose tissues and whole-body energy balance.
机译:BSCL2 / SEIPIN中的突变会导致Berardinelli-Seip先天性脂肪营养不良2型(BSCL2),但Bscl2调节脂肪组织功能的机制尚不清楚。在这里,我们生成了脂肪组织(成熟)Bscl2基因敲除(Ad-mKO)小鼠,其中在成年动物的脂肪细胞中专门消融了Bscl2,以研究获得的Bscl2缺失对脂肪组织功能和能量平衡的影响。 Ad-mKO小鼠显示出减少的肥胖症,并且免受高脂饮食诱导的肥胖症的侵害,但对胰岛素抵抗或肝脂肪变性则没有作用。基因表达谱分析和生化分析显示,由于Bscl2缺失引起的cAMP /蛋白激酶A信号的诱导,白色脂肪组织(WAT)和棕色脂肪组织的脂解和脂肪酸氧化增加,以及WAT褐变。有趣的是,Bscl2缺失减少食物摄入并下调脂肪β3-肾上腺素能受体(ADRB3)的表达。受损的ADRB3信号传导部分抵消了环境温度下饲养的Ad-mKO小鼠中褐变诱导的能量消耗和生热的上调。但是,这种反调节反应在热中性条件下被取消,导致Ad-mKO小鼠的体重损失更大。这些发现表明,Bscl2调节脂肪细胞的脂解作用和β-肾上腺素能信号传导,从而对脂肪组织和全身能量平衡产生复杂的影响。

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