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调节 pJNK 和 pAKT 信号串扰可产生最佳的凋亡反应。

Modulation of signaling cross-talk between pJNK and pAKT generates optimal apoptotic response.

机构信息

Department of Chemical Engineering, Indian Institute of Technology Bombay, Mumbai, India.

Department of Chemistry, Indian Institute of Technology Bombay, Mumbai, India.

出版信息

PLoS Comput Biol. 2022 Oct 14;18(10):e1010626. doi: 10.1371/journal.pcbi.1010626. eCollection 2022 Oct.

Abstract

Tumor necrosis factor alpha (TNFα) is a well-known modulator of apoptosis by maintaining a balance between proliferation and cell-death in normal cells. Cancer cells often evade apoptotic response following TNFα stimulation by altering signaling cross-talks. Thus, varying the extent of signaling cross-talk could enable optimal TNFα mediated apoptotic dynamics. Herein, we use an experimental data-driven mathematical modeling to quantitate the extent of synergistic signaling cross-talk between the intracellular entities phosphorylated JNK (pJNK) and phosphorylated AKT (pAKT) that orchestrate the phenotypic apoptosis level by modulating the activated Caspase3 dynamics. Our study reveals that this modulation is orchestrated by the distinct dynamic nature of the synergism at early and late phases. We show that this synergism in signal flow is governed by branches originating from either TNFα receptor and NFκB, which facilitates signaling through survival pathways. We demonstrate that the experimentally quantified apoptosis levels semi-quantitatively correlates with the model simulated Caspase3 transients. Interestingly, perturbing pJNK and pAKT transient dynamics fine-tunes this accumulated Caspase3 guided apoptotic response. Thus, our study offers useful insights for identifying potential targeted therapies for optimal apoptotic response.

摘要

肿瘤坏死因子-α(TNFα)是一种众所周知的凋亡调节剂,它通过在正常细胞中维持增殖和细胞死亡之间的平衡来发挥作用。癌细胞在受到 TNFα 刺激后,往往通过改变信号转导的串扰来逃避凋亡反应。因此,改变信号转导的串扰程度可以使 TNFα 介导的凋亡动力学达到最佳状态。在此,我们使用基于实验数据的数学建模方法,定量分析了细胞内磷酸化 JNK(pJNK)和磷酸化 AKT(pAKT)之间协同信号转导的程度,这两种磷酸化蛋白通过调节激活的 Caspase3 动力学来调节表型凋亡水平。我们的研究表明,这种调节是由早期和晚期协同作用的不同动态性质所决定的。我们表明,这种信号流中的协同作用是由源自 TNFα 受体和 NFκB 的分支所控制的,这些分支促进了存活途径的信号传递。我们证明,实验量化的凋亡水平与模型模拟的 Caspase3 瞬态之间存在半定量相关性。有趣的是,干扰 pJNK 和 pAKT 的瞬态动力学可以精细调整这种累积的 Caspase3 指导的凋亡反应。因此,我们的研究为确定最佳凋亡反应的潜在靶向治疗方法提供了有用的见解。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/da7f/9604984/d04b2424378a/pcbi.1010626.g001.jpg

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