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Regulation of alternative splicing by the circadian clock and food related cues

机译:昼夜节律和与食物有关的提示对替代性剪接的规定

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Background: The circadian clock orchestrates daily rhythms in metabolism, physiology and behaviour that allow organisms to anticipate regular changes in their environment, increasing their adaptation. Such circadian phenotypes are underpinned by daily rhythms in gene expression. Little is known, however, about the contribution of post-transcriptional processes, particularly alternative splicing. Results: Using Affymetrix mouse exon-arrays, we identified exons with circadian alternative splicing in the liver. Validated circadian exons were regulated in a tissue-dependent manner and were present in genes with circadian transcript abundance. Furthermore, an analysis of circadian mutant Vipr2 -/- mice revealed the existence of distinct physiological pathways controlling circadian alternative splicing and RNA binding protein expression, with contrasting dependence on Vipr2-mediated physiological signals. This view was corroborated by the analysis of the effect of fasting on circadian alternative splicing. Feeding is an important circadian stimulus, and we found that fasting both modulates hepatic circadian alternative splicing in an exon-dependent manner and changes the temporal relationship with transcript-level expression. Conclusions: The circadian clock regulates alternative splicing in a manner that is both tissue-dependent and concurrent with circadian transcript abundance. This adds a novel temporal dimension to the regulation of mammalian alternative splicing. Moreover, our results demonstrate that circadian alternative splicing is regulated by the interaction between distinct physiological cues, and illustrates the capability of single genes to integrate circadian signals at different levels of regulation.
机译:背景:昼夜节律安排了新陈代谢,生理和行为方面的日常节律,使生物能够预期其环境的规律变化,从而增强其适应性。这种昼夜节律的表型由基因表达中的日常节律所支撑。但是,关于转录后过程,特别是选择性剪接的贡献知之甚少。结果:使用Affymetrix小鼠外显子阵列,我们鉴定了在肝脏中具有昼夜节律选择性剪接的外显子。验证的昼夜节律外显子以组织依赖性方式调节,并存在于昼夜节律转录本丰富的基因中。此外,对昼夜节律突变Vipr2-/-小鼠的分析揭示了存在不同的生理途径,这些生理途径控制了昼夜节律的选择性剪接和RNA结合蛋白的表达,与Vipr2介导的生理信号形成了依赖性。通过分析禁食对昼夜节律选择性剪接的影响,证实了这一观点。进食是一种重要的昼夜节律刺激,我们发现禁食会以外显子依赖性方式调节肝脏昼夜节律的选择性剪接,并改变与转录水平表达的时间关系。结论:昼夜节律时钟以与组织相关并且与昼夜节律转录本丰度同时发生的方式调节替代剪接。这为哺乳动物选择性剪接的调控增加了新的时间维度。此外,我们的结果表明,昼夜节律的选择性剪接受到不同生理线索之间相互作用的调节,并说明了单个基因整合昼夜节律信号的能力。

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