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Nonparametric Entrainment Of The In Vitro Circadian Phosphorylation Rhythm Of Cyanobacterial Kaic By Temperature Cycle

机译:温度循环对蓝藻Kaic体外昼夜节律磷酸化节律的非参数夹带

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The three cyanobacterial Kai proteins and ATP are capable of generating an autonomous rhythm of KaiC phosphorylation in a test tube. As the period is ≈24 hours and is stable in a wide temperature range, this rhythm is thought to function as the basic oscillator of the cyanobacterial circadian system. We have examined the rhythm under various temperature cycles and found that it was stably entrained by a temperature cycle of 20-28 hours. As the period length was not altered by temperature, entrainment by period change could be excluded from possible mechanisms. Instead, temperature steps between 30° and 45℃ and wee versa shifted the phase of the rhythm in a phase-dependent manner. Based on the phase response curves of the step-up and step-down in temperature, phase shift by single temperature pulse was estimated using a nonparametric entrainment model (discontinuous phase jump by external stimuli). The predicted phase shift was consistent with the experimentally measured phase shift. Next, successive phase shifts caused by repeated temperature cycles were computed by two phase response curves and compared with actual entrainment of the rhythm. As the entrainment pattern observed after various combinations of temperature cycles matched the prediction, it is likely that nonparametric entrainment functions even in the simple three-protein system. We also analyzed entrainment of KaiC phosphorylation by temperature cycle in cyanobacterial cells and found both the parametric and the nonparametric models function in vivo.
机译:三种蓝细菌Kai蛋白和ATP能够在试管中产生KaiC磷酸化的自主节律。由于周期约为24小时,并且在较宽的温度范围内稳定,因此该节奏被认为是蓝细菌昼夜节律系统的基本振荡器。我们检查了各种温度循环下的节奏,发现它在20-28小时的温度循环中稳定地被夹带。由于周期长度不会因温度而改变,因此可以从可能的机制中排除因周期变化引起的夹带。取而代之的是,温度在30°至45℃之间变化,反之亦然,以相位依赖的方式改变节奏的相位。根据温度升高和降低的相位响应曲线,使用非参数夹带模型(外部刺激引起的不连续相跳)估算单个温度脉冲引起的相移。预测的相移与实验测量的相移一致。接下来,由两条温度响应曲线计算出由重复的温度循环引起的连续相移,并将其与节奏的实际夹带进行比较。由于在各种温度循环组合后观察到的夹带模式与预测相符,因此即使在简单的三蛋白系统中,非参数夹带也可能起作用。我们还分析了蓝细菌细胞中温度循环引起的KaiC磷酸化的夹带,发现参数模型和非参数模型均在体内起作用。

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