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密码子序列对遗传网络动态的影响。

Effects of codon sequence on the dynamics of genetic networks.

机构信息

Computational Systems Biology Research Group, Department of Signal Processing, Tampere University of Technology, P.O. Box 527, FIN-33101, Finland.

出版信息

J Theor Biol. 2012 Dec 21;315:17-25. doi: 10.1016/j.jtbi.2012.08.029. Epub 2012 Aug 31.

Abstract

In prokaryotes, the rate at which codons are translated varies from one codon to the next. Using a stochastic model of transcription and translation at the nucleotide and codon levels, we investigate the effects of the codon sequence on the dynamics of protein numbers. For sequences generated according to the codon frequencies in Escherichia coli, we find that mean protein numbers at near equilibrium differ with the codon sequence, due to the mean codon translation efficiencies, in particular of the codons at the ribosome binding site region. We find close agreement between these predictions and measurements of protein expression levels as a function of the codon sequence. Next, we investigate the effects of short codon sequences at the start/end of the RNA sequence with linearly increasing/decreasing translation efficiencies, known as slow ramps. The ramps affect the mean, but not the fluctuations, in proteins numbers by affecting the rate of translation initiation. Finally, we show that slow ramps affect the dynamics of small genetic circuits, namely, switches and clocks. In switches, ramps affect the frequency of switching and bias the robustness of the noisy attractors. In repressilators, ramps alter the robustness of periodicity. We conclude that codon sequences affect the dynamics of gene expression and genetic circuits and, thus, are likely to be under selection regarding both mean codon frequency as well as spatial arrangement along the sequence.

摘要

在原核生物中,密码子的翻译速度在一个密码子到另一个密码子之间有所不同。我们使用核苷酸和密码子水平上转录和翻译的随机模型,研究了密码子序列对蛋白质数量动态的影响。对于根据大肠杆菌中密码子频率生成的序列,我们发现由于平均密码子翻译效率(特别是核糖体结合位点区域的密码子),接近平衡时的平均蛋白质数量因密码子序列而异。我们发现这些预测与作为密码子序列函数的蛋白质表达水平的测量之间存在密切一致。接下来,我们研究了 RNA 序列起始/结束处具有线性增加/减少翻译效率的短密码子序列的影响,称为缓慢斜坡。斜坡通过影响翻译起始的速度来影响蛋白质数量的平均值,但不影响波动。最后,我们表明缓慢斜坡会影响小遗传电路(即开关和时钟)的动态。在开关中,斜坡会影响开关的频率,并使噪声吸引子的稳健性产生偏差。在阻遏子中,斜坡会改变周期性的稳健性。我们得出结论,密码子序列会影响基因表达和遗传电路的动态,因此,它们可能会受到平均密码子频率以及沿序列的空间排列的选择。

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