Fonseca Bruno D, Smith Ewan M, Yelle Nicolas, Alain Tommy, Bushell Martin, Pause Arnim
Children's Hospital of Eastern Ontario Research Institute, 401 Smyth Road, Ottawa, ON K1H 8L1, Canada.
MRC Toxicology Unit, Hodgkin Building, Lancaster Road, Leicester LE1 9HN, UK.
Semin Cell Dev Biol. 2014 Dec;36:102-12. doi: 10.1016/j.semcdb.2014.09.014. Epub 2014 Sep 27.
Control of translation allows for the production of stoichiometric levels of each protein in the cell. Attaining such a level of fine-tuned regulation of protein production requires the coordinated temporal and spatial control of numerous cellular signalling cascades impinging on the various components of the translational machinery. Foremost among these is the mTOR signalling pathway. The mTOR pathway regulates both the initiation and elongation steps of protein synthesis through the phosphorylation of numerous translation factors, while simultaneously ensuring adequate folding of nascent polypeptides through co-translational degradation of misfolded proteins. Perhaps most remarkably, mTOR is also a key regulator of the synthesis of ribosomal proteins and translation factors themselves. Two seminal studies have recently shown in translatome analysis that the mTOR pathway preferentially regulates the translation of mRNAs encoding ribosomal proteins and translation factors. Therefore, the role of the mTOR pathway in the control of protein synthesis extends far beyond immediate translational control. By controlling ribosome production (and ultimately ribosome availability), mTOR is a master long-term controller of protein synthesis. Herein, we review the literature spanning the early discoveries of mTOR on translation to the latest advances in our understanding of how the mTOR pathway controls the synthesis of ribosomal proteins.
翻译的控制使得细胞中每种蛋白质能够以化学计量水平产生。要实现如此精细调控的蛋白质产生水平,需要对众多影响翻译机制各个组分的细胞信号级联反应进行协调的时间和空间控制。其中最为重要的是mTOR信号通路。mTOR通路通过对众多翻译因子的磷酸化作用来调节蛋白质合成的起始和延伸步骤,同时通过对错误折叠蛋白质的共翻译降解来确保新生多肽的充分折叠。或许最值得注意的是,mTOR还是核糖体蛋白和翻译因子自身合成的关键调节因子。最近两项开创性研究在翻译组分析中表明,mTOR通路优先调节编码核糖体蛋白和翻译因子的mRNA的翻译。因此,mTOR通路在蛋白质合成控制中的作用远远超出了直接的翻译控制。通过控制核糖体的产生(并最终控制核糖体的可用性),mTOR是蛋白质合成的主要长期调控因子。在此,我们回顾了从mTOR在翻译方面的早期发现到我们对mTOR通路如何控制核糖体蛋白合成的最新理解的相关文献。