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生物时钟的起伏

The ups and downs of biological timers.

作者信息

Rappaport Noa, Winter Shay, Barkai Naama

机构信息

Department of Molecular Genetics, Weizmann Institute of Science, Rehovot, Israel.

出版信息

Theor Biol Med Model. 2005 Jun 20;2:22. doi: 10.1186/1742-4682-2-22.

Abstract

BACKGROUND

The need to execute a sequence of events in an orderly and timely manner is central to many biological processes, including cell cycle progression and cell differentiation. For self-perpetuating systems, such as the cell cycle oscillator, delay times between events are defined by the network of interacting proteins that propagates the system. However, protein levels inside cells are subject to genetic and environmental fluctuations, raising the question of how reliable timing is maintained.

RESULTS

We compared the robustness of different mechanisms for encoding delay times to fluctuations in protein expression levels. Gradual accumulation and gradual decay of a regulatory protein have an equivalent capacity for defining delay times. Yet, we find that the former is highly sensitive to fluctuations in gene dosage, while the latter can buffer such perturbations. In particular, a positive feedback where the degrading protein auto-enhances its own degradation may render delay times practically insensitive to gene dosage.

CONCLUSION

While our understanding of biological timing mechanisms is still rudimentary, it is clear that there is an ample use of degradation as well as self-enhanced degradation in processes such as cell cycle and circadian clocks. We propose that degradation processes, and specifically self-enhanced degradation, will be preferred in processes where maintaining the robustness of timing is important.

摘要

背景

以有序且及时的方式执行一系列事件的需求对于许多生物过程至关重要,包括细胞周期进程和细胞分化。对于自我维持的系统,如细胞周期振荡器,事件之间的延迟时间由传播该系统的相互作用蛋白质网络定义。然而,细胞内的蛋白质水平会受到遗传和环境波动的影响,这就引发了如何维持可靠计时的问题。

结果

我们比较了不同编码延迟时间机制对蛋白质表达水平波动的稳健性。调节蛋白的逐渐积累和逐渐衰减在定义延迟时间方面具有同等能力。然而,我们发现前者对基因剂量波动高度敏感,而后者可以缓冲此类扰动。特别是,降解蛋白自身增强其自身降解的正反馈可能使延迟时间实际上对基因剂量不敏感。

结论

虽然我们对生物计时机制的理解仍然很初步,但很明显,在细胞周期和生物钟等过程中,降解以及自我增强降解有大量应用。我们提出,在维持计时稳健性很重要的过程中,降解过程,特别是自我增强降解,将是首选。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/4917/1208956/ca6ee5ecb6ea/1742-4682-2-22-1.jpg

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