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Loss of DJ-1 promotes browning of white adipose tissue in diet-induced obese mice

机译:DJ-1的丧失促进饮食诱导的肥胖小鼠的白色脂肪组织的褐变

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The seminal discovery of browning of white adipose tissue (WAT) holds great promise for the treatment of obesity and metabolic syndrome. DJ-1 is evolutionarily conserved across species, and mutations in DJ-1 have been identified in Parkinson's disease. Higher levels of DJ-1 are associated with obesity, but the underlying mechanism is less understood. Here, we report the previously unappreciated role of DJ-1 in white adipocyte biology in mature models of obesity. We used DJ-1 knockout (KO) mouse models and wild-type littermates maintained on a normal diet or high-fat diet as well asin vitrocell models to show the direct effects of DJ-1 depletion on adipocyte phenotype, thermogenic capacity, fat metabolism, and microenvironment profile. Global DJ-1 KO mice show increased sympathetic input to WAT and β3-adrenergic receptor intracellular signaling, leading to a previously unrecognized compensatory mechanism through browning of WAT with associated characteristics, including high mitochondrial contents, reduced lipid accumulation, adequate vascularization and attenuated autophagy. DJ-1 KO mice had normal body weight, energy balance, and adiposity, which were associated with protective effects on healthy WAT expansion by hyperplasia. Our findings revealed that browning of inguinal WAT occurred in DJ-1 KO mice that do not show increased predisposition to obesity and suggest that such potential mechanism may overcome the adverse metabolic consequences of obesity independent of an effect on body weight. Here, we provide the first direct evidence that targeting DJ-1 in adipocyte metabolic health may offer a unique therapeutic strategy for the treatment of obesity.
机译:白色脂肪组织(WAT)褐变的开创性发现对治疗肥胖和代谢综合征的治疗具有很大的承担。 DJ-1在物种中被进化地保存,并且在帕金森病中鉴定了DJ-1中的突变。较高水平的DJ-1与肥胖有关,但潜在机制较少理解。在这里,我们在肥胖的成熟模型中报告了先前未被DJ-1在白色adipocyte生物学中的作用。我们使用DJ-1淘汰赛(KO)小鼠型号和野生型凋落物维持在正常饮食或高脂饮食中以及素vitrocell模型,显示DJ-1耗尽对脂肪细胞表型,热容量,脂肪代谢的直接影响和微环境概况。全局DJ-1 KO小鼠表明对Wat和β3-肾上腺素能受体细胞内信号传导的增加的交感神经输入,导致先前未识别的补偿机制,通过Wat的褐变具有相关特征,包括高线粒体含量,降低脂质积累,足够的血管化和减毒的自噬。 DJ-1 KO小鼠具有正常的体重,能量平衡和肥胖,与对增生的健康Wat扩张的保护作用有关。我们的研究结果透露,在DJ-1 KO小鼠中发生褐变,没有显示出肥胖的易感性,并表明这种潜在机制可能克服肥胖的不良代谢后果与对体重的影响无关。在这里,我们提供第一种直接证据,即靶向DJ-1在脂肪细胞代谢健康中可能提供独特的治疗肥胖症的治疗策略。

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