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A Double Negative Feedback Loop between mTORC1 and AMPK Kinases Guarantees Precise Autophagy Induction upon Cellular Stress

机译:mTORC1和AMPK激酶之间的双负反馈回路可确保细胞应激时精确的自噬诱导

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摘要

Cellular homeostasis is controlled by an evolutionary conserved cellular digestive process called autophagy. This mechanism is tightly regulated by the two sensor elements called mTORC1 and AMPK. mTORC1 is one of the master regulators of proteostasis, while AMPK maintains cellular energy homeostasis. AMPK is able to promote autophagy by phosphorylating ULK1, the key inducer of autophagosome formation, while mTORC1 downregulates the self-eating process via ULK1 under nutrient rich conditions. We claim that the feedback loops of the AMPK–mTORC1–ULK1 regulatory triangle guarantee the appropriate response mechanism when nutrient and/or energy supply changes. In our opinion, there is an essential double negative feedback loop between mTORC1 and AMPK. Namely, not only does AMPK downregulate mTORC1, but mTORC1 also inhibits AMPK and this inhibition is required to keep AMPK inactive at physiological conditions. The aim of the present study was to explore the dynamical characteristic of AMPK regulation upon various cellular stress events. We approached our scientific analysis from a systems biology perspective by incorporating both theoretical and molecular biological techniques. In this study, we confirmed that AMPK is essential to promote autophagy, but is not sufficient to maintain it. AMPK activation is followed by ULK1 induction, where protein has a key role in keeping autophagy active. ULK1-controlled autophagy is always preceded by AMPK activation. With both ULK1 depletion and mTORC1 hyper-activation (i.e., TSC1/2 downregulation), we demonstrate that a double negative feedback loop between AMPK and mTORC1 is crucial for the proper dynamic features of the control network. Our computer simulations have further proved the dynamical characteristic of AMPK–mTORC1–ULK1 controlled cellular nutrient sensing.
机译:细胞稳态由称为自噬的进化保守的细胞消化过程控制。该机制由称为mTORC1和AMPK的两个传感器元件严格调节。 mTORC1是蛋白稳态的主要调节剂之一,而AMPK则保持细胞能量稳态。 AMPK能够通过使ULK1(自噬体形成的关键诱导剂)磷酸化来促进自噬,而mTORC1在营养丰富的条件下通过ULK1下调自食过程。我们声称,当营养和/或能量供应发生变化时,AMPK–​​mTORC1–ULK1调节三角形的反馈回路可确保适当的响应机制。我们认为,mTORC1和AMPK之间存在必不可少的双负反馈环路。即,不仅AMPK下调了mTORC1,而且mTORC1也抑制了AMPK,而这种抑制作用是保持AMPK在生理条件下不活跃所必需的。本研究的目的是探讨在各种细胞应激事件中AMPK调控的动力学特征。我们通过结合理论和分子生物学技术从系统生物学的角度进行了科学分析。在这项研究中,我们证实AMPK对促进自噬至关重要,但不足以维持自噬。 AMPK激活后是ULK1诱导,其中蛋白质在保持自噬活性中起关键作用。 ULK1控制的自噬始终在AMPK激活之前进行。通过ULK1耗尽和mTORC1过度激活(即TSC1 / 2下调),我们证明了AMPK和mTORC1之间的双负反馈环路对于控制网络的适当动态功能至关重要。我们的计算机仿真进一步证明了AMPK–​​mTORC1–ULK1控制的细胞营养物感测的动力学特性。

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