Song Ziyi, Xiaoli Alus M, Zhang Quanwei, Zhang Yi, Yang Ellen S T, Wang Sven, Chang Rui, Zhang Zhengdong D, Yang Gongshe, Strich Randy, Pessin Jeffrey E, Yang Fajun
From the Laboratory of Animal Fat Deposition and Muscle Development, Department of Animal Sciences, College of Animal Science and Technology, Northwest A&F University, Yangling, Shaanxi 712100, China.
the Department of Medicine, Division of Endocrinology and Diabetes Research Center, and.
J Biol Chem. 2017 May 26;292(21):8918-8932. doi: 10.1074/jbc.M117.776229. Epub 2017 Mar 28.
Brown adipose tissue is important for maintaining energy homeostasis and adaptive thermogenesis in rodents and humans. As disorders arising from dysregulated energy metabolism, such as obesity and metabolic diseases, have increased, so has interest in the molecular mechanisms of adipocyte biology. Using a functional screen, we identified cyclin C (CycC), a conserved subunit of the Mediator complex, as a novel regulator for brown adipocyte formation. siRNA-mediated CycC knockdown (KD) in brown preadipocytes impaired the early transcriptional program of differentiation, and genetic KO of CycC completely blocked the differentiation process. RNA sequencing analyses of CycC-KD revealed a critical role of CycC in activating genes co-regulated by peroxisome proliferator activated receptor γ (PPARγ) and CCAAT/enhancer-binding protein α (C/EBPα). Overexpression of PPARγ2 or addition of the PPARγ ligand rosiglitazone rescued the defects in CycC-KO brown preadipocytes and efficiently activated the PPARγ-responsive promoters in both WT and CycC-KO cells, suggesting that CycC is not essential for PPARγ transcriptional activity. In contrast, CycC-KO significantly reduced C/EBPα-dependent gene expression. Unlike for PPARγ, overexpression of C/EBPα could not induce C/EBPα target gene expression in CycC-KO cells or rescue the CycC-KO defects in brown adipogenesis, suggesting that CycC is essential for C/EBPα-mediated gene activation. CycC physically interacted with C/EBPα, and this interaction was required for C/EBPα transactivation domain activity. Consistent with the role of C/EBPα in white adipogenesis, CycC-KD also inhibited differentiation of 3T3-L1 cells into white adipocytes. Together, these data indicate that CycC activates adipogenesis in part by stimulating the transcriptional activity of C/EBPα.
棕色脂肪组织对于维持啮齿动物和人类的能量平衡及适应性产热非常重要。随着能量代谢失调引发的疾病,如肥胖症和代谢性疾病的增加,人们对脂肪细胞生物学的分子机制的兴趣也与日俱增。通过功能筛选,我们鉴定出细胞周期蛋白C(CycC),一种中介体复合物的保守亚基,作为棕色脂肪细胞形成的新型调节因子。棕色前脂肪细胞中siRNA介导的CycC敲低(KD)损害了早期分化转录程序,而CycC的基因敲除(KO)则完全阻断了分化过程。对CycC-KD进行RNA测序分析揭示了CycC在激活由过氧化物酶体增殖物激活受体γ(PPARγ)和CCAAT/增强子结合蛋白α(C/EBPα)共同调控的基因中的关键作用。PPARγ2的过表达或添加PPARγ配体罗格列酮可挽救CycC-KO棕色前脂肪细胞中的缺陷,并有效激活野生型和CycC-KO细胞中PPARγ反应性启动子,表明CycC对于PPARγ转录活性并非必需。相反,CycC-KO显著降低了C/EBPα依赖性基因表达。与PPARγ不同,C/EBPα的过表达不能在CycC-KO细胞中诱导C/EBPα靶基因表达,也不能挽救棕色脂肪生成中的CycC-KO缺陷,表明CycC对于C/EBPα介导的基因激活至关重要。CycC与C/EBPα发生物理相互作用,并且这种相互作用是C/EBPα反式激活结构域活性所必需 的。与C/EBPα在白色脂肪生成中的作用一致,CycC-KD也抑制了3T3-L1细胞向白色脂肪细胞的分化。总之,这些数据表明CycC部分通过刺激C/EBPα的转录活性来激活脂肪生成。