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Dicer1-miR-328-Bace1 signalling controls brown adipose tissue differentiation and function

机译:Dicer1-miR-328-Bace1信号传导控制棕色脂肪组织的分化和功能

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Activation of brown adipose tissue (BAT) controls energy homeostasis in rodents and humans and has emerged as an innovative strategy for the treatment of obesity and type 2 diabetes mellitus(1-4). Here we show that ageing-and obesity-associated dysfunction of brown fat coincides with global microRNA downregulation due to reduced expression of the microRNA-processing node Dicer1. Consequently, heterozygosity of Dicer1 in BAT aggravated diet-induced-obesity (DIO)-evoked deterioration of glucose metabolism. Analyses of differential microRNA expression during preadipocyte commitment and mouse models of progeria, longevity and DIO identified miR-328 as a regulator of BAT differentiation. Reducing miR-328 blocked preadipocyte commitment, whereas miR-328 overexpression instigated BAT differentiation and impaired muscle progenitor commitment-partly through silencing of the beta-secretase Bace1. Loss of Bace1 enhanced brown preadipocyte specification in vitro and was overexpressed in BAT of obese and progeroid mice. In vivo Bace1 inhibition delayed DIO-induced weight gain and improved glucose tolerance and insulin sensitivity. These experiments reveal Dicer1-miR-328-Bace1 signalling as a determinant of BAT function, and highlight the potential of Bace1 inhibition as a therapeutic approach to improve not only neurodegenerative diseases but also ageing-and obesity-associated impairments of BAT function.
机译:棕色脂肪组织(BAT)的活化控制了啮齿动物和人类的能量稳态,并且已成为治疗肥胖和2型糖尿病的一种创新策略(1-4)。在这里,我们显示棕色脂肪的衰老和肥胖相关功能障碍与全球microRNA下调相吻合,这归因于microRNA处理节点Dicer1的表达降低。因此,BAT中Dicer1的杂合性加剧了饮食诱导的肥胖症(DIO)引起的葡萄糖代谢恶化。对脂肪细胞前期定居过程和早衰,长寿和DIO小鼠模型中差异性microRNA表达的分析确定了miR-328是BAT分化的调节剂。减少miR-328会阻止前脂肪细胞的活动,而miR-328的过表达会导致BAT分化并损害肌肉祖细胞的活动-部分是通过沉默β-分泌酶Bace1来实现的。 Bace1的丢失增强了体外棕色前脂肪细胞的规格,并且在肥胖和早衰小鼠的BAT中过表达。体内Bace1抑制可延迟DIO诱导的体重增加,并改善葡萄糖耐量和胰岛素敏感性。这些实验揭示了Dicer1-miR-328-Bace1信号是BAT功能的决定因素,并突显了抑制Bace1的潜力,不仅可以改善神经退行性疾病,而且可以改善与衰老和肥胖相关的BAT功能障碍。

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