Pearen Michael A, Goode Joel M, Fitzsimmons Rebecca L, Eriksson Natalie A, Thomas Gethin P, Cowin Gary J, Wang S-C Mary, Tuong Zewen K, Muscat George E O
The University of Queensland, Institute for Molecular Bioscience, Brisbane, Queensland 4072, Australia.
Mol Endocrinol. 2013 Nov;27(11):1897-917. doi: 10.1210/me.2013-1205. Epub 2013 Sep 24.
The mRNA encoding Nor-1/NR4A3 is rapidly and strikingly induced by β2-adrenergic signaling in glycolytic and oxidative skeletal muscle. In skeletal muscle cells, Nor-1 expression is important for the regulation of oxidative metabolism. Transgenic skeletal muscle-specific expression of activated Nor-1 resulted in the acquisition of an endurance phenotype, an increase in type IIA/X oxidative muscle fibers, and increased numbers of mitochondria. In the current study, we used dual-energy x-ray absorptiometry and magnetic resonance imaging analysis to demonstrate decreased adiposity in transgenic (Tg) Nor-1 mice relative to that in wild-type littermates. Furthermore, the Tg-Nor-1 mice were resistant to diet-induced weight gain and maintained fasting glucose at normoglycemic levels. Expression profiling and RT-quantitative PCR analysis revealed significant increases in genes involved in glycolysis, the tricarboxylic acid cycle, oxidative phosphorylation, fatty acid oxidation, and glycogen synthesis, in concordance with the lean phenotype. Moreover, expression profiling identified several Z-disc and sarcomeric binding proteins that modulate fiber type phenotype and endurance, eg, α-actinin-3. In addition, we demonstrated that the Tg-Nor-1 mouse line has significantly higher glycogen content in skeletal muscle relative to that in wild-type littermates. Finally, we identified a decreased NAD(+)/NADH ratio with a concordant increase in peroxisome proliferator-activated receptor γ coactivator-1α1 protein/mRNA expression. Increased NADH was associated with an induction of the genes involved in the malate-aspartate shuttle and a decrease in the glycerol 3-phosphate shuttle, which maximizes aerobic ATP production. In conclusion, skeletal muscle-specific Nor-1 expression regulates genes and pathways that regulate adiposity, muscle fiber type metabolic capacity, and endurance.
编码Nor-1/NR4A3的mRNA在糖酵解型和氧化型骨骼肌中可被β2-肾上腺素能信号快速且显著地诱导。在骨骼肌细胞中,Nor-1的表达对于氧化代谢的调节很重要。激活的Nor-1在骨骼肌中的特异性转基因表达导致获得耐力表型、IIA/X型氧化肌纤维增加以及线粒体数量增多。在本研究中,我们使用双能X线吸收法和磁共振成像分析来证明,与野生型同窝仔鼠相比,转基因(Tg)Nor-1小鼠的肥胖程度降低。此外,Tg-Nor-1小鼠对饮食诱导的体重增加具有抗性,并将空腹血糖维持在正常血糖水平。表达谱分析和RT-定量PCR分析显示,与瘦型表型一致,参与糖酵解、三羧酸循环、氧化磷酸化、脂肪酸氧化和糖原合成的基因显著增加。此外,表达谱分析鉴定出几种调节纤维类型表型和耐力的Z盘和肌节结合蛋白,例如α-辅肌动蛋白-3。另外,我们证明Tg-Nor-1小鼠品系骨骼肌中的糖原含量相对于野生型同窝仔鼠显著更高。最后,我们发现NAD(+)/NADH比值降低,同时过氧化物酶体增殖物激活受体γ共激活因子-1α1蛋白/mRNA表达相应增加。NADH增加与苹果酸-天冬氨酸穿梭相关基因的诱导以及3-磷酸甘油穿梭的减少有关,这使有氧ATP产生最大化。总之,骨骼肌特异性Nor-1表达调节与肥胖、肌纤维类型代谢能力和耐力相关的基因及信号通路。