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首页> 外文期刊>Journal of biological rhythms >The tau mutation in the Syrian hamster differentially reprograms the circadian clock in the SCN and peripheral tissues
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The tau mutation in the Syrian hamster differentially reprograms the circadian clock in the SCN and peripheral tissues

机译:叙利亚仓鼠中的Tau突变差别重新编程SCN和外周组织中的昼夜时钟

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摘要

The hypothalamic suprachiasmatic nuclei (SCN), the principal circadian oscillator in mammals, are synchronized to the solar day by the light-dark cycle, and in turn, they coordinate circadian oscillations in peripheral tissues. The tau mutation in the Syrian hamster is caused by a point mutation leading to a deficiency in the ability of Casein Kinase 1 epsilon to phosphorylate its targets, including circadian PER proteins. How this accelerates circadian period in neural tissues is not known, nor is its impact on peripheral circadian oscillators established. We show that this mutation has no effect on per mRNA expression nor the nuclear accumulation of PER proteins in the SCN. It does, however, accelerate the clearance of PER proteins from the nucleus to an extent sufficient to explain the shortened circadian period of behavioral rhythms. The mutation also has novel, unanticipated consequences for circadian timing in the periphery, including tissue-specific phase advances and/or reduced amplitude of circadian gene expression. The results suggest that the tau mutation accelerates a specific phase, during mid-late subjective night of the SCN circadian feedback loop, rather than cause a global compression of the entire cycle. This reprogrammed output from the clock is associated with peripheral desynchrony, which in turn could account for impaired growth and metabolic efficiency of the mutant.
机译:下丘脑高压体核(SCN),哺乳动物中的主要昼夜焦炭振荡器,通过光暗循环与太阳日同步,然后在外围组织中坐标昼夜振荡。叙利亚仓鼠中的Tau突变是由酪蛋白激酶1ε磷酸化能力缺乏缺乏的点突变引起的,包括每种蛋白质的昼夜循环。如何在神经组织中加速昼夜昼夜时期,也不知道其对建立的外围昼夜周边振荡器的影响。我们表明,该突变对每个mRNA表达没有影响,也没有SCN中每种蛋白质的核积累。然而,它确实加速了从核的每个蛋白质的间隙到足以解释行为节律的缩短昼夜节律的程度。该突变还具有对周边的昼夜昼夜时序的新颖,意识到的后果,包括组织特异性相位进展和/或降低昼夜节律基因表达的幅度。结果表明,TAU突变在SCN昼夜反馈回路的中期主观夜晚期间加速了特定阶段,而不是导致整个周期的全局压缩。从时钟的重新编程输出与外围地形不同步相关联,这反过来可能考虑突变体的增长和代谢效率受损。

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