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转录后调控对大肠杆菌表型噪声的影响。

Effects of post-transcriptional regulation on phenotypic noise in Escherichia coli.

机构信息

Department of Physics of Complex Systems, Weizmann Institute of Science, Rehovot 76100, Israel.

出版信息

Nucleic Acids Res. 2013 May;41(9):4825-34. doi: 10.1093/nar/gkt184. Epub 2013 Mar 21.

Abstract

Cell-to-cell variations in protein abundance, called noise, give rise to phenotypic variability between isogenic cells. Studies of noise have focused on stochasticity introduced at transcription, yet the effects of post-transcriptional regulatory processes on noise remain unknown. We study the effects of RyhB, a small-RNA of Escherichia coli produced on iron stress, on the phenotypic variability of two of its downregulated target proteins, using dual chromosomal fusions to fluorescent reporters and measurements in live individual cells. The total noise of each of the target proteins is remarkably constant over a wide range of RyhB production rates despite cells being in stress. In fact, coordinate downregulation of the two target proteins by RyhB reduces the correlation between their levels. Hence, an increase in phenotypic variability under stress is achieved by decoupling the expression of different target proteins in the same cell, rather than by an increase in the total noise of each. Extrinsic noise provides the dominant contribution to the total protein noise over the total range of RyhB production rates. Stochastic simulations reproduce qualitatively key features of our observations and show that a feed-forward loop formed by transcriptional extrinsic noise, an sRNA and its target genes exhibits strong noise filtration capabilities.

摘要

细胞内蛋白质丰度的细胞间变化,称为噪声,导致同基因型细胞之间表型的可变性。对噪声的研究主要集中在转录过程中引入的随机性上,但转录后调控过程对噪声的影响仍不清楚。我们使用双染色体融合荧光报告基因的方法,在活细胞个体中进行测量,研究了大肠杆菌小分子 RNA RyhB 在铁胁迫下对其两个下调靶蛋白表型可变性的影响。尽管细胞处于应激状态,但每个靶蛋白的总噪声在 RyhB 产生率的广泛范围内都非常稳定。事实上,RyhB 对两个靶蛋白的协调下调降低了它们水平之间的相关性。因此,通过在同一细胞中解耦不同靶蛋白的表达,而不是增加每个靶蛋白的总噪声,可以在应激下实现表型可变性的增加。外在噪声在 RyhB 产生率的整个范围内对总蛋白质噪声提供主要贡献。随机模拟再现了我们观察结果的关键定性特征,并表明由转录外在噪声、sRNA 及其靶基因形成的前馈环具有很强的噪声过滤能力。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/f76a/3643596/b613f2a4a6fd/gkt184f1p.jpg

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