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Emergent memory in cell signaling: Persistent adaptive dynamics in cascades can arise from the diversity of relaxation time-scales

机译:细胞信号中的紧急记忆:级联中的持久自适应动力学可能来自弛豫时间尺度的多样性

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摘要

The mitogen-activated protein kinase (MAPK) signaling cascade, an evolutionarily conserved motif present in all eukaryotic cells, is involved in coordinating crucial cellular functions. While the asymptotic dynamical behavior of the pathway stimulated by a time-invariant signal is relatively well-understood, we show using a computational model that it exhibits a rich repertoire of transient adaptive responses to changes in stimuli. When the signal is switched on, the response is characterized by long-lived modulations in frequency as well as amplitude. On withdrawing the stimulus, the activity decays over long timescales, exhibiting reverberations characterized by repeated spiking in the activated MAPK concentration. The long-term persistence of such post-stimulus activity suggests that the cascade retains memory of the signal for a significant duration following its removal. The molecular mechanism underlying the reverberatory activity is related to the existence of distinct relaxation rates for the different cascade components. This results in the imbalance of fluxes between different layers of the cascade, with the reuse of activated kinases as enzymes when they are released from sequestration in complexes. The persistent adaptive response, indicative of a cellular “short-term” memory, suggests that this ubiquitous signaling pathway plays an even more central role in information processing by eukaryotic cells.
机译:有丝分裂原激活的蛋白激酶(MAPK)信号级联反应,存在于所有真核细胞中的进化保守基序,参与协调关键的细胞功能。尽管由时不变信号刺激的路径的渐近动力学行为是相对容易理解的,但我们使用计算模型表明,该模型表现出了对刺激变化的瞬态自适应响应的丰富集合。当信号打开时,响应的特征是对频率和幅度的长期调制。撤消刺激后,活性会在较长的时间范围内衰减,并表现出以激活的MAPK浓度反复增加为特征的混响。这种刺激后活性的长期持久性表明,级联在去除后会在相当长的时间内保留信号的记忆。混响活性的潜在分子机制与不同级联组分存在明显的弛豫速率有关。这导致级联的不同层之间的通量失衡,当从复合物中螯合释放活化的激酶时,活化的激酶会重新用作酶。持续的适应性反应表明细胞的“短期”记忆,表明这种普遍存在的信号通路在真核细胞的信息处理中起着更加重要的作用。

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