Li Jing Jing, Ferry Robert J, Diao Shiyong, Xue Bingzhong, Bahouth Suleiman W, Liao Francesca-Fang
Departments of Pharmacology (J.J.L., S.D., S.W.B., F.-F.L.) and Pediatrics (R.J.F.), University of Tennessee Health Science Center, Memphis, Tennessee 38163; Department of Psychology (R.J.F), University of Memphis, Memphis, Tennessee 38152; and Department of Biology (B.X.), Georgia State University, Atlanta, Georgia 30302.
Endocrinology. 2015 Apr;156(4):1283-91. doi: 10.1210/en.2014-1909. Epub 2015 Jan 21.
Neural precursor cell expressed developmentally down-regulated protein 4 (Nedd4) is the prototypical protein in the Nedd4 ubiquitin ligase (E3) family, which governs ubiquitin-dependent endocytosis and/or degradation of plasma membrane proteins. Loss of Nedd4 results in embryonic or neonatal lethality in mice and reduced insulin/IGF-1 signaling in embryonic fibroblasts. To delineate the roles of Nedd4 in vivo, we examined the phenotypes of heterozygous knockout mice using a high-fat diet-induced obesity (HFDIO) model. We observed that Nedd4+/- mice are moderately insulin resistant but paradoxically protected against HFDIO. After high-fat diet feeding, Nedd4+/- mice showed less body weight gain, less fat mass, and smaller adipocytes vs the wild type. Despite ameliorated HFDIO, Nedd4+/- mice did not manifest improvement in glucose tolerance vs the wild type in both genders. Nedd4+/- male, but not female, mice displayed significantly lower fasting blood glucose levels and serum insulin levels. Under obesogenic conditions, Nedd4+/- mice displayed elevated stimulated lipolytic activity, primarily through a β2-adrenergic receptor. Combined, these data support novel complex roles for Nedd4 in metabolic regulation involving altered insulin and β-adrenergic signaling pathways.
神经前体细胞表达的发育下调蛋白4(Nedd4)是Nedd4泛素连接酶(E3)家族中的典型蛋白,该家族调控质膜蛋白的泛素依赖性内吞作用和/或降解。Nedd4缺失会导致小鼠胚胎期或新生期死亡,并降低胚胎成纤维细胞中的胰岛素/胰岛素样生长因子-1信号。为了阐明Nedd4在体内的作用,我们使用高脂饮食诱导的肥胖(HFDIO)模型研究了杂合敲除小鼠的表型。我们观察到,Nedd4+/-小鼠具有中度胰岛素抵抗,但却出人意料地对HFDIO具有保护作用。高脂饮食喂养后,与野生型相比,Nedd4+/-小鼠体重增加较少、脂肪量较少且脂肪细胞较小。尽管HFDIO有所改善,但Nedd4+/-小鼠在两性中的糖耐量与野生型相比并未表现出改善。Nedd4+/-雄性小鼠而非雌性小鼠的空腹血糖水平和血清胰岛素水平显著较低。在致肥胖条件下,Nedd4+/-小鼠主要通过β2-肾上腺素能受体表现出增强的刺激脂肪分解活性。综合来看,这些数据支持Nedd4在涉及胰岛素和β-肾上腺素能信号通路改变的代谢调节中具有新的复杂作用。