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Oscillations in MAPK cascade triggered by two distinct designs of coupled positive and negative feedback loops

机译:MAPK级联中的振荡由正反馈和负反馈耦合的两种不同设计触发

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Background Feedback loops, both positive and negative are embedded in the Mitogen Activated Protein Kinase ( MAPK ) cascade. In the three layer MAPK cascade, both feedback loops originate from the terminal layer and their sites of action are either of the two upstream layers. Recent studies have shown that the cascade uses coupled positive and negative feedback loops in generating oscillations. Two plausible designs of coupled positive and negative feedback loops can be elucidated from the literature; in one design the positive feedback precedes the negative feedback in the direction of signal flow and vice-versa in another. But it remains unexplored how the two designs contribute towards triggering oscillations in MAPK cascade. Thus it is also not known how amplitude, frequency, robustness or nature (analogous/digital) of the oscillations would be shaped by these two designs. Results We built two models of MAPK cascade that exhibited oscillations as function of two underlying designs of coupled positive and negative feedback loops. Frequency, amplitude and nature (digital/analogous) of oscillations were found to be differentially determined by each design. It was observed that the positive feedback emerging from an oscillating MAPK cascade and functional in an external signal processing module can trigger oscillations in the target module, provided that the target module satisfy certain parametric requirements. The augmentation of the two models was done to incorporate the nuclear-cytoplasmic shuttling of cascade components followed by induction of a nuclear phosphatase. It revealed that the fate of oscillations in the MAPK cascade is governed by the feedback designs. Oscillations were unaffected due to nuclear compartmentalization owing to one design but were completely abolished in the other case. Conclusion The MAPK cascade can utilize two distinct designs of coupled positive and negative feedback loops to trigger oscillations. The amplitude, frequency and robustness of the oscillations in presence or absence of nuclear compartmentalization were differentially determined by two designs of coupled positive and negative feedback loops. A positive feedback from an oscillating MAPK cascade was shown to induce oscillations in an external signal processing module, uncovering a novel regulatory aspect of MAPK signal processing.
机译:正反馈和负反馈的背景反馈环均嵌入丝裂原活化蛋白激酶(MAPK)级联中。在三层MAPK级联中,两个反馈回路都起源于终端层,它们的作用点是两个上游层中的任何一个。最近的研究表明,级联在产生振荡时使用耦合的正反馈回路和负反馈回路。可以从文献中阐明耦合正反馈回路和负反馈回路的两种合理设计。在一种设计中,正反馈在信号流方向上先于负反馈,反之亦然。但是,尚不清楚这两种设计如何对触发MAPK级联振荡产生影响。因此,还不知道如何通过这两种设计来形成振荡的振幅,频率,鲁棒性或性质(模拟/数字)。结果我们建立了两个MAPK级联模型,这些模型表现出作为正反馈回路和负反馈回路的两个基础设计的函数。发现振荡的频率,幅度和性质(数字/模拟)由每种设计来确定。可以观察到,只要目标模块满足某些参数要求,从振荡的MAPK级联产生并在外部信号处理模块中起作用的正反馈会触发目标模块中的振荡。完成了两个模型的增强,以合并级联组件的核质穿梭,然后诱导核磷酸酶。结果表明,MAPK级联振荡的命运受反馈设计的控制。由于一种设计,振荡不会因核隔离而受到影响,但在另一种情况下则完全取消了。结论MAPK级联可以利用正反馈和负反馈耦合的两种不同设计来触发振荡。在存在或不存在核分隔的情况下,振荡的幅度,频率和鲁棒性由耦合的正反馈回路和负反馈回路的两种设计来确定。已显示来自振荡的MAPK级联的正反馈在外部信号处理模块中引起振荡,从而揭示了MAPK信号处理的新型调节方面。

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