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具有成本效益的昼夜节律机制:昼夜节律蛋白的节律性降解在没有节律性翻译后调控的情况下自发出现。

Cost-effective circadian mechanism: rhythmic degradation of circadian proteins spontaneously emerges without rhythmic post-translational regulation.

作者信息

Lim Roktaek, Chae Junghun, Somers David E, Ghim Cheol-Min, Kim Pan-Jun

机构信息

Department of Biology, Hong Kong Baptist University, Kowloon, Hong Kong.

Department of Physics, Ulsan National Institute of Science and Technology, Ulsan 44919, Republic of Korea.

出版信息

iScience. 2021 Jun 14;24(7):102726. doi: 10.1016/j.isci.2021.102726. eCollection 2021 Jul 23.

Abstract

Circadian protein oscillations are maintained by the lifelong repetition of protein production and degradation in daily balance. It comes at the cost of ever-replayed, futile protein synthesis each day. This biosynthetic cost with a given oscillatory protein profile is relievable by a rhythmic, not constant, degradation rate that selectively peaks at the right time of day but remains low elsewhere, saving much of the gross protein loss and of the replenishing protein synthesis. Here, our mathematical modeling reveals that the rhythmic degradation rate of proteins with circadian production spontaneously emerges under steady and limited activity of proteolytic mediators and does not necessarily require rhythmic post-translational regulation of previous focus. Additional (yet steady) post-translational modifications in a proteolytic pathway can further facilitate the degradation's rhythmicity in favor of the biosynthetic cost saving. Our work is supported by animal and plant circadian data, offering a generic mechanism for potentially widespread, time-dependent protein turnover.

摘要

昼夜节律性蛋白质振荡通过蛋白质生成与降解在日常平衡中的终生重复得以维持。这是以每天不断重复、徒劳的蛋白质合成作为代价的。对于具有特定振荡蛋白质谱的这种生物合成成本,可通过一种有节奏而非恒定的降解速率来缓解,这种降解速率在一天中的合适时间选择性地达到峰值,而在其他时间保持较低水平,从而减少大量的总蛋白质损失以及补充性蛋白质合成。在此,我们的数学模型表明,在蛋白水解介质的稳定且有限的活性下,具有昼夜节律性生成的蛋白质的节律性降解速率会自发出现,并不一定需要先前关注的节律性翻译后调控。蛋白水解途径中的额外(但稳定的)翻译后修饰可进一步促进降解的节律性,以利于节省生物合成成本。我们的工作得到了动物和植物昼夜节律数据的支持,为潜在广泛存在的、时间依赖性蛋白质周转提供了一种通用机制。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/5f2d/8324817/09573906011d/fx1.jpg

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