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转录和翻译的自动调节:定性分析。

Autoregulation of Transcription and Translation: A Qualitative Analysis.

机构信息

University of Dundee, Dundee, UK.

出版信息

Bull Math Biol. 2023 May 26;85(7):57. doi: 10.1007/s11538-023-01143-6.

Abstract

The regulation of both mRNA transcription and translation by down-stream gene products allows for a range of rich dynamical behaviours (e.g. homeostatic, oscillatory, excitability and intermittent solutions). Here, qualitative analysis is applied to an existing model of a gene regulatory network in which a protein dimer inhibits its own transcription and upregulates its own translation rate. It is demonstrated that the model possesses a unique steady state, conditions are derived under which limit cycle solutions arise and estimates are provided for the oscillator period in the limiting case of a relaxation oscillator. The analysis demonstrates that oscillations can arise only if mRNA is more stable than protein and the effect of nonlinear translation inhibition is sufficiently strong. Moreover, it is shown that the oscillation period can vary non-monotonically with transcription rate. Thus the proposed framework can provide an explanation for observed species-specific dependency of segmentation clock period on Notch signalling activity. Finally, this study facilitates the application of the proposed model to more general biological settings where post transcriptional regulation effects are likely important.

摘要

下游基因产物对 mRNA 转录和翻译的调节允许丰富的动态行为(例如,稳态、振荡、兴奋性和间歇性解决方案)。在这里,定性分析应用于一个现有的基因调控网络模型,其中蛋白质二聚体抑制自身转录并上调自身翻译率。结果表明,该模型具有独特的稳态,推导了极限环解出现的条件,并在弛豫振荡器的极限情况下提供了振荡器周期的估计。分析表明,只有当 mRNA 比蛋白质更稳定且非线性翻译抑制的影响足够强时,才会出现振荡。此外,还表明振荡周期可以随转录速率非单调变化。因此,所提出的框架可以为观察到的特定物种对节段时钟周期对 Notch 信号活性的依赖性提供解释。最后,本研究促进了将所提出的模型应用于更一般的生物学环境,其中可能需要考虑转录后调节效应。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/a95d/10219895/62a6529513c6/11538_2023_1143_Fig1_HTML.jpg

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