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Identification and validation of the pathways and functions regulated by the orphan nuclear receptor, ROR alpha1, in skeletal muscle

机译:鉴定和验证骨骼肌中孤儿核受体ROR alpha1调控的途径和功能

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The retinoic acid receptor-related orphan receptor (ROR) alpha has been demonstrated to regulate lipid metabolism. We were interested in the RORα1 dependent physiological functions in skeletal muscle. This major mass organ accounts for ~40% of the total body mass and significant levels of lipid catabolism, glucose disposal and energy expenditure. We utilized the strategy of targeted muscle-specific expression of a truncated (dominant negative) RORα1ΔDE in transgenic mice to investigate RORα1 signaling in this tissue. Expression profiling and pathway analysis indicated that RORα influenced genes involved in: (i) lipid and carbohydrate metabolism, cardiovascular and metabolic disease; (ii) LXR nuclear receptor signaling and (iii) Akt and AMPK signaling. This analysis was validated by quantitative PCR analysis using TaqMan low-density arrays, coupled to statistical analysis (with Empirical Bayes and Benjamini–Hochberg). Moreover, westerns and metabolic profiling were utilized to validate the genes, proteins and pathways (lipogenic, Akt, AMPK and fatty acid oxidation) involved in the regulation of metabolism by RORα1. The identified genes and pathways were in concordance with the demonstration of hyperglycemia, glucose intolerance, attenuated insulin-stimulated phosphorylation of Akt and impaired glucose uptake in the transgenic heterozygous Tg-RORα1ΔDE animals. In conclusion, we propose that RORα1 is involved in regulating the Akt2-AMPK signaling pathways in the context of lipid homeostasis in skeletal muscle.
机译:视黄酸受体相关的孤儿受体(ROR)α已被证明可调节脂质代谢。我们对骨骼肌中RORα1依赖性生理功能感兴趣。这个主要的质量器官约占总体重的40%,并且脂质分解代谢,葡萄糖处理和能量消耗水平很高。我们利用转基因小鼠中截短的(显性阴性)RORα1ΔDE的靶向肌肉特异性表达策略研究了该组织中的RORα1信号传导。表达谱和通路分析表明,RORα影响了涉及以下基因:(i)脂质和碳水化合物的代谢,心血管和代谢疾病; (ii)LXR核受体信号传导和(iii)Akt和AMPK信号传导。该分析通过使用TaqMan低密度阵列的定量PCR分析以及统计分析(与Empirical Bayes和Benjamini–Hochberg结合使用)进行验证。此外,利用westerns和代谢谱分析来验证参与RORα1代谢调节的基因,蛋白质和途径(脂肪生成,Akt,AMPK和脂肪酸氧化)。在转基因杂合的Tg-RORα1ΔDE动物中,鉴定出的基因和途径与高血糖,葡萄糖耐受不良,胰岛素刺激的Akt磷酸化减弱和葡萄糖摄取受损的证明相符。总之,我们建议RORα1参与调节骨骼肌脂质稳态的Akt2-AMPK信号通路。

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