Mammucari Cristina, Schiaffino Stefano, Sandri Marco
Venetian Institute of Molecular Medicine, Padova, Italy.
Autophagy. 2008 May;4(4):524-6. doi: 10.4161/auto.5905. Epub 2008 Mar 13.
The balance between synthesis and degradation of intracellular components determines the overall muscle fiber size. Muscle atrophy occurs when the degradation rate is higher than the synthesis rate, for example during disuse, fasting or systemic diseases such as diabetes, cancer and renal failure. The two main catabolic systems that are activated during atrophy are the ubiquitin-proteasome and the autophagy-lysosome pathways. FoxO3 transcription factor causes marked atrophy in adult skeletal muscle and induces the muscle-specific ubiquitin ligase Atrogin-1/MAFbx.(1) In addition, we recently reported that FoxO3 is necessary and sufficient for the induction of autophagy in skeletal muscle.(2) Transcription of autophagy related genes, such as LC3B and Bnip3, is activated during fasting and is mediated by FoxO3. In particular, Bnip3 induces autophagosome formation and is responsible for the induction of autophagy by FoxO3. Surprisingly, rapamycin is not able to induce autophagy in skeletal muscle in vivo, indicating that the Akt-FoxO axis, rather than the Akt-mTOR pathway, is involved in this process. Here we discuss the major implications of our recent work.
细胞内成分合成与降解之间的平衡决定了肌纤维的整体大小。当降解速率高于合成速率时,就会发生肌肉萎缩,例如在废用、禁食或糖尿病、癌症和肾衰竭等全身性疾病期间。萎缩过程中被激活的两个主要分解代谢系统是泛素-蛋白酶体和自噬-溶酶体途径。FoxO3转录因子会导致成年骨骼肌显著萎缩,并诱导肌肉特异性泛素连接酶Atrogin-1/MAFbx。(1)此外,我们最近报道,FoxO3对于骨骼肌自噬的诱导是必要且充分的。(2)自噬相关基因(如LC3B和Bnip3)的转录在禁食期间被激活,并由FoxO3介导。特别是,Bnip3诱导自噬体形成,并负责FoxO3介导的自噬诱导。令人惊讶的是,雷帕霉素在体内无法诱导骨骼肌自噬,这表明参与此过程的是Akt-FoxO轴,而非Akt-mTOR途径。在此,我们讨论我们近期工作的主要意义。