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固有噪声谱的基因网络塑造

Gene network shaping of inherent noise spectra.

作者信息

Austin D W, Allen M S, McCollum J M, Dar R D, Wilgus J R, Sayler G S, Samatova N F, Cox C D, Simpson M L

机构信息

Molecular-Scale Engineering and Nanoscale Technologies Group, Oak Ridge National Laboratory, Bethel Valley Road, Oak Ridge, Tennessee 37831, USA.

出版信息

Nature. 2006 Feb 2;439(7076):608-11. doi: 10.1038/nature04194.

Abstract

Recent work demonstrates that stochastic fluctuations in molecular populations have consequences for gene regulation. Previous experiments focused on noise sources or noise propagation through gene networks by measuring noise magnitudes. However, in theoretical analysis, we showed that noise frequency content is determined by the underlying gene circuits, leading to a mapping between gene circuit structure and the noise frequency range. An intriguing prediction from our previous studies was that negative autoregulation shifts noise to higher frequencies where it is more easily filtered out by gene networks--a property that may contribute to the prevalence of autoregulation motifs (for example, found in the regulation of approximately 40% of Escherichia coli genes). Here we measure noise frequency content in growing cultures of E. coli, and verify the link between gene circuit structure and noise spectra by demonstrating the negative autoregulation-mediated spectral shift. We further demonstrate that noise spectral measurements provide mechanistic insights into gene regulation, as perturbations of gene circuit parameters are discernible in the measured noise frequency ranges. These results suggest that noise spectral measurements could facilitate the discovery of novel regulatory relationships.

摘要

近期研究表明,分子群体中的随机波动会对基因调控产生影响。以往的实验通过测量噪声幅度,聚焦于噪声源或噪声在基因网络中的传播。然而,在理论分析中,我们发现噪声频率成分由潜在的基因回路决定,从而在基因回路结构与噪声频率范围之间建立了一种映射关系。我们之前研究中一个有趣的预测是,负反馈自动调节会将噪声转移到更高频率,而在这个频率范围基因网络更容易将其滤除——这一特性可能有助于自动调节基序的普遍存在(例如,在约40%的大肠杆菌基因调控中发现)。在此,我们测量了大肠杆菌生长培养物中的噪声频率成分,并通过证明负反馈自动调节介导的频谱偏移,验证了基因回路结构与噪声谱之间的联系。我们进一步证明,噪声频谱测量能够为基因调控提供机制性见解,因为在测量的噪声频率范围内可以辨别基因回路参数的扰动。这些结果表明,噪声频谱测量有助于发现新的调控关系。

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