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转变中的串扰:Akt的易位

Crosstalk in transition: the translocation of Akt.

作者信息

Gray Catheryn W, Coster Adelle C F

机构信息

School of Mathematics and Statistics, UNSW, Sydney, Australia.

出版信息

J Math Biol. 2019 Mar;78(4):919-942. doi: 10.1007/s00285-018-1297-8. Epub 2018 Oct 9.

Abstract

Akt/PKB is an important crosstalk node at the junction between a number of major signalling pathways in the mammalian cell. As a significant nutrient sensor, Akt plays a central role in many cellular processes, including cell growth, cell survival and glucose metabolism. The dysregulation of Akt signalling is implicated in the development of many diseases, from diabetes to cancer. The translocation of Akt from cytosol to plasma membrane is a crucial step in Akt activation. Akt is initially synthesized on the endoplasmic reticulum, but translocates to the plasma membrane (PM) in response to insulin stimulation, where it may be activated. The Akt is then recycled to the cytoplasm. The activated Akt may propagate signals to downstream substrates both at the PM and in the cytosol, hence understanding the translocation dynamics is an important step in dissecting the signalling system. At the present time, however, knowledge concerning the translocation of either activated and unactivated Akt is scant. Here we present a simple, deterministic, three-compartment ordinary differential equation model of Akt translocation in vitro. This model can reproduce the salient features of Akt translocation in a manner consistent with the experimental data. Furthermore, we demonstrate that this system is equivalent to a damped harmonic oscillator, and analyse the steady state and transient behaviour of the model over the entire parameter space.

摘要

Akt/PKB是哺乳动物细胞中多个主要信号通路交汇点处的一个重要信号转导节点。作为一种重要的营养传感器,Akt在许多细胞过程中发挥核心作用,包括细胞生长、细胞存活和葡萄糖代谢。Akt信号失调与许多疾病的发生发展有关,从糖尿病到癌症。Akt从细胞质转移到质膜是Akt激活的关键步骤。Akt最初在内质网上合成,但在胰岛素刺激下转移到质膜(PM),在那里它可能被激活。然后Akt再循环到细胞质中。激活的Akt可以在质膜和细胞质中向下游底物传递信号,因此了解转移动力学是剖析信号系统的重要一步。然而,目前关于激活的和未激活的Akt转移的知识都很匮乏。在这里,我们提出了一个简单的、确定性的、三室常微分方程体外Akt转移模型。该模型能够以与实验数据一致的方式重现Akt转移的显著特征。此外,我们证明该系统等同于一个阻尼谐振子,并分析了模型在整个参数空间中的稳态和瞬态行为。

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