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首页> 外文期刊>Journal of biological rhythms >Wavelet measurement suggests cause of period instability in mammalian circadian neurons
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Wavelet measurement suggests cause of period instability in mammalian circadian neurons

机译:小波测量表明哺乳动物昼夜节律神经元周期不稳定的原因

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Cells in the suprachiasmatic nucleus (SCN) display remarkable precision, while either physically or chemically decoupling these cells from each other leads to a dramatic increase in period-to-period variability. Where previous studies have classified cells as either arrhythmic or circadian, our wavelet analysis reveals that individual cells, when removed from network interactions, intermittently express circadian and/or longer infradian periods. We reproduce the characteristic period distribution of uncoupled SCN cells with a stochastic model of the uncoupled SCN cell near a bifurcation in Bmal1 transcription repression. This suggests that the uncoupled cells may be switching between 2 oscillatory mechanisms: the indirect negative feedback of protein complex PER-CRY on the expression of Per and Cry genes, and the negative feedback of CLOCK-BMAL1 on the expression of the Bmal1 gene. The model is particularly sensitive near this bifurcation point, with only a small change in Bmal1 transcription repression needed to switch from the stable precision of coupled SCN cells to the unstable oscillations of decoupled individual cells, making this rate constant, an ideal target for cell signaling in the SCN.
机译:视交叉上核(SCN)中的细胞显示出卓越的精确度,而物理或化学方式将这些细胞彼此分离会导致周期间变异性的急剧增加。如果先前的研究将细胞归类为心律不齐或昼夜节律,则我们的小波分析表明,从网络互动中删除的单个细胞会间歇性地表达昼夜节律和/或更长的红外线周期。我们用Bmal1转录抑制中分歧附近的未耦合SCN细胞的随机模型重现了未耦合SCN细胞的特征周期分布。这表明未偶联的细胞可能在两种振荡机制之间切换:蛋白复合物PER-CRY对Per和Cry基因表达的间接负反馈,以及CLOCK-BMAL1对Bmal1基因表达的负反馈。该模型在此分叉点附近特别敏感,只需很小的Bmal1转录抑制作用即可从偶联的SCN细胞的稳定精度切换到解耦的单个细胞的不稳定振荡​​,从而使该速率恒定,成为细胞信号传递的理想目标在SCN中。

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