...
首页> 外文期刊>Molecular Metabolism >The MicroRNA miR-696 is regulated by SNARK and reduces mitochondrial activity in mouse skeletal muscle through Pgc1α inhibition
【24h】

The MicroRNA miR-696 is regulated by SNARK and reduces mitochondrial activity in mouse skeletal muscle through Pgc1α inhibition

机译:MicroRNA miR-696由Snark调节并通过PGC1α抑制减少小鼠骨骼肌中的线粒体活性

获取原文
           

摘要

Objective MicroRNAs (miRNA) are known to regulate the expression of genes involved in several physiological processes including metabolism, mitochondrial biogenesis, proliferation, differentiation, and cell death. Methods Using “in silico” analyses, we identified 219 unique miRNAs that potentially bind to the 3′UTR region of a critical mitochondrial regulator, the peroxisome proliferator-activated receptor gamma coactivator (PGC) 1 alpha ( Pgc1α ). Of the 219 candidate miRNAs, miR-696 had one of the highest interactions at the 3′UTR of Pgc1α , suggesting that miR-696 may be involved in the regulation of Pgc1α . Results Consistent with this hypothesis, we found that miR-696 was highly expressed in the skeletal muscle of STZ-induced diabetic mice and chronic high-fat-fed mice. C2C12 muscle cells exposed to palmitic acid also exhibited a higher expression of miR-696 . This increased expression corresponded with a reduced expression of oxidative metabolism genes and reduced mitochondrial respiration. Importantly, reducing miR-696 reversed decreases in mitochondrial activity in response to palmitic acid. Using C2C12 cells treated with the AMP-activated protein kinase (AMPK) activator AICAR and skeletal muscle from AMPKα2 dominant-negative (DN) mice, we found that the signaling mechanism regulating miR-696 did not involve AMPK. In contrast, overexpression of SNF1-AMPK-related kinase (SNARK) in C2C12 cells increased miR-696 transcription while knockdown of SNARK significantly decreased miR-696 . Moreover, muscle-specific transgenic mice overexpressing SNARK exhibited a lower expression of Pgc1α , elevated levels of miR-696 , and reduced amounts of spontaneous activity. Conclusions Our findings demonstrate that metabolic stress increases miR-696 expression in skeletal muscle cells, which in turn inhibits Pgc1α , reducing mitochondrial function. SNARK plays a role in this process as a metabolic stress signaling molecule inducing the expression of miR-696 .
机译:众所周知,物镜微小RNA(miRNA)调节涉及若干生理过程中的基因的表达,包括代谢,线粒体生物发生,增殖,分化和细胞死亡。方法使用“在硅”分析中,我们鉴定了219个独特的miRNA,其可能与关键线粒体调节剂的3'UTR区域结合,过氧化物体增殖物激活的受体γ共酰变剂(PGC)1α(PGC1α)。在219候选MiRNA中,MIR-696具有PGC1α的3'UTR的最高相互作用,表明MIR-696可以参与PGC1α的调节。结果与该假设一致,我们发现MiR-696在STZ诱导的糖尿病小鼠和慢性高脂肪喂养小鼠的骨骼肌中高度表达。暴露于棕榈酸的C2C12肌细胞也表现出miR-696的更高表达。这种增加的表达式对应于氧化代谢基因的表达和降低的线粒体呼吸。重要的是,减少miR-696反向棕榈酸的线粒体活性逆转降低。使用用AMP-Activated蛋白激酶(AMPK)活化剂AICAR和骨骼肌处理的C2C12细胞来自AMPKα2显性阴性(DN)小鼠,我们发现调节MIR-696的信号机制不涉及AMPK。相反,C2C12细胞中SNF1-AMPK相关激酶(SNARK)的过表达增加了miR-696转录,同时爆痕显着降低miR-696。此外,过表达Snark的肌肉特异性转基因小鼠表现出pGC1α的较低表达,升高的miR-696,以及减少的自发性活性。结论我们的研究结果表明,代谢应激在骨骼肌细胞中增加miR-696表达,这反过来抑制PGC1α,降低线粒体功能。 Snark在该过程中发挥作用,作为诱导miR-696表达的代谢应激信号分子。

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号