Guerrero-Morín José G, Santillán Moisés
Unidad Monterrey, Centro de Investigación y de Estudios Avanzados del IPN, Apodaca, Nuevo León, Mexico.
Unidad Monterrey, Centro de Investigación y de Estudios Avanzados del IPN, Apodaca, Nuevo León, Mexico.
J Theor Biol. 2020 Sep 21;501:110360. doi: 10.1016/j.jtbi.2020.110360. Epub 2020 Jun 7.
Crosstalk between the circadian clock clockwork and cellular metabolic regulatory networks is crucial to ensure an adequate response of an organism to the day/night cycle. mTOR (mammalian/mechanistic target of rapamycin) is a master growth regulator and sensor of nutrient status, which is part of the mTOR complex 1 (mTORC1). While the circadian clock confers rhythmicity to the mTOR protein by regulating its degradation rate, mTORC1 activity diminishes period and augments amplitude of circadian oscillations at the cellular level by a currently unknown mechanism. Here, we develop a mathematical deterministic DAE (differential-algebraic equation) model, to explore the possible interactions that allow mTORC1 to display such regulation of the core circadian clock. Our results suggest that mTORC1 is capable of regulating amplitude by exerting translational control on core the clock protein BMAL1, and that period-tuning is achieved by controlling post-translational localization of BMAL1. Since, in our model, mTORC1 control of BMAL1 localization greatly diminishes the ability of the clock to oscillate, and regulation of BMAL1 translation reduces this effect, our results also suggest that both levels of regulation must be present to ensure the robustness of oscillations. Together, the above results emphasize the importance of the influence of mTORC1 on the circadian rhythms.
生物钟机制与细胞代谢调节网络之间的相互作用对于确保生物体对昼夜循环做出充分反应至关重要。mTOR(哺乳动物雷帕霉素靶蛋白/机械性雷帕霉素靶蛋白)是主要的生长调节因子和营养状态传感器,是mTOR复合物1(mTORC1)的一部分。虽然生物钟通过调节mTOR蛋白的降解速率赋予其节律性,但mTORC1活性在细胞水平上通过目前未知的机制缩短了昼夜节律振荡的周期并增大了其振幅。在此,我们开发了一个数学确定性微分代数方程(DAE)模型,以探索使mTORC1能够对核心生物钟进行这种调节的可能相互作用。我们的结果表明,mTORC1能够通过对核心生物钟蛋白BMAL1施加翻译控制来调节振幅,并且通过控制BMAL1的翻译后定位来实现周期调节。由于在我们的模型中,mTORC1对BMAL1定位的控制极大地降低了生物钟振荡的能力,而对BMAL1翻译的调节则减少了这种影响,我们的结果还表明,必须同时存在这两种调节水平以确保振荡的稳健性。综上所述,上述结果强调了mTORC1对昼夜节律影响的重要性。