Liu Yan-Yun, Ayers Stephen, Milanesi Anna, Teng Xiaochun, Rabi Sina, Akiba Ysutada, Brent Gregory A
From the Molecular Endocrinology Laboratory, Veterans Affairs Greater Los Angeles Healthcare System and Departments of Medicine and Physiology, David Geffen School of Medicine at UCLA, Los Angeles, California 90073,
the Genomic Medicine Program, Methodist Hospital Research Institute, Houston, Texas 77030, and.
J Biol Chem. 2015 Mar 20;290(12):7402-15. doi: 10.1074/jbc.M114.600312. Epub 2015 Jan 8.
Thyroid hormone and thyroid hormone receptor (TR) play an essential role in metabolic regulation. However, the role of TR in adipogenesis has not been established. We reported previously that TR sumoylation is essential for TR-mediated gene regulation and that mutation of either of the two sites in TRα or any of the three sites in TRβ reduces TR sumoylation. Here, we transfected TR sumoylation site mutants into human primary preadiocytes and the mouse 3T3L1 preadipocyte cell line to determine the role of TR sumoylation in adipogenesis. Reduced sumoylation of TRα or TRβ resulted in fewer and smaller lipid droplets and reduced proliferation of preadipocytes. TR sumoylation mutations, compared with wild-type TR, results in reduced C/EBP expression and reduced PPARγ2 mRNA and protein levels. TR sumoylation mutants recruited NCoR and disrupted PPARγ-mediated perilipin1 (Plin1) gene expression, associated with impaired lipid droplet formation. Expression of NCoRΔID, a mutant NCoR lacking the TR interaction domain, partially "rescued" the delayed adipogenesis and restored Plin1 gene expression and adipogenesis. TR sumoylation site mutants impaired Wnt/β-catenin signaling pathways and the proliferation of primary human preadipocytes. Expression of the TRβ K146Q sumoylation site mutant down-regulated the essential genes required for canonical Wnt signal-mediated proliferation, including Wnt ligands, Fzds, β-catenin, LEF1, and CCND1. Additionally, the TRβ K146Q mutant enhanced the canonical Wnt signaling inhibitor Dickkopf-related protein 1 (DKK1). Our data demonstrate that TR sumoylation is required for activation of the Wnt canonical signaling pathway during preadipocyte proliferation and enhances the PPARγ signaling that promotes differentiation.
甲状腺激素和甲状腺激素受体(TR)在代谢调节中起着至关重要的作用。然而,TR在脂肪生成中的作用尚未明确。我们之前报道过,TR的类泛素化修饰对于TR介导的基因调控至关重要,并且TRα的两个位点或TRβ的三个位点中任何一个位点发生突变都会降低TR的类泛素化修饰。在此,我们将TR类泛素化修饰位点突变体转染到人原代前脂肪细胞和小鼠3T3L1前脂肪细胞系中,以确定TR类泛素化修饰在脂肪生成中的作用。TRα或TRβ的类泛素化修饰减少导致脂滴数量减少且体积变小,前脂肪细胞增殖也减少。与野生型TR相比,TR类泛素化修饰突变导致C/EBP表达降低以及PPARγ2 mRNA和蛋白水平降低。TR类泛素化修饰突变体招募NCoR并破坏PPARγ介导的围脂滴蛋白1(Plin1)基因表达,这与脂滴形成受损有关。缺乏TR相互作用结构域的突变体NCoRΔID的表达部分“挽救”了延迟的脂肪生成,并恢复了Plin1基因表达和脂肪生成。TR类泛素化修饰位点突变体损害Wnt/β-连环蛋白信号通路以及原代人前脂肪细胞的增殖。TRβ K146Q类泛素化修饰位点突变体的表达下调了经典Wnt信号介导增殖所需的关键基因,包括Wnt配体、Fzds、β-连环蛋白、LEF1和CCND1。此外,TRβ K146Q突变体增强了经典Wnt信号抑制剂Dickkopf相关蛋白1(DKK1)。我们的数据表明,TR类泛素化修饰在前脂肪细胞增殖过程中是激活Wnt经典信号通路所必需的,并增强促进分化的PPARγ信号。