比较两种基于KaiC对蓝藻节律转录调控的模型

Y. Li, Hui Wu, Jinhuo Luo
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引用次数: 0

摘要

生物钟是一种自我维持的生物振荡器,可以受到环境因素的影响。蓝藻是已知具有昼夜节律的最简单的生物,昼夜节律是适应日常环境变化的稳态基本过程。蓝藻时钟基因产物KaiA、KaiB和KaiC相互作用,以昼夜节律方式调节KaiC磷酸化和kaiBC表达。KaiC的总磷酸化水平随昼夜周期振荡。本文基于两种可能的转录调控,对产生kai基因昼夜节律振荡的转录激活模型和转录抑制模型进行了数值检验。这两个模型都再现了实验观察到的恒定黑暗(DD)和恒定光照(LL)下的持续昼夜节律振荡。对比两种模型中DD和LL的相移,转录激活模型与实验观察结果一致,表明转录激活模型可能反映了蓝藻中kai振子实际机制的本质。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Comparing two models based on the transcriptional regulation by KaiC of cyanobacteria rhythm
Circadian clocks are self-sustained biological oscillators that can be entrained by environmental cues. Cyanobacteria are the simplest organisms known to exhibit circadian rhythms, which is the fundamental process of homeostasis adapting to daily environmental changes. The cyanobacterial clock gene products, KaiA, KaiB, and KaiC interact with each other, and regulate KaiC phosphorylation and kaiBC expression in a circadian fashion. The total phosphorylation level of KaiC oscillates with a circadian period. In this paper, based on two possible transcriptional regulations, we examined numerically two models, the Transcriptional Activation Model and the Transcriptional Repression Model to generate circadian oscillation of kai genes. These two models both reproduce experimental observed sustained circadian oscillations in constant dark(DD) and constant light(LL). Comparing phase shifts between DD and LL in these two model, the Transcriptional Activation Model is consistent with the experimental observations, suggesting that the Transcriptional Activation Model may reflect the essence of the actual mechanism of kai oscillator in cyanobacteria.
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