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Bio-Object, a stochastic simulator for post-transcriptional regulation

机译:Bio-Object,用于转录后调控的随机模拟器

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Motivation: Recently, biologists learnt that the transport and degradation of transcribed mRNA and protein present critically important steps for the regulation of gene expression through extensive studies of RNA interference, none-sense mediated decay and ubiquitination. However, adequate consideration of these factors has not been done in the past in in silico analysis compared with transcriptional regulations.Results: We have developed a bio-system simulator 'Bio-Object' and assessed the contribution of numerous factors including movements, stability and interactions of both mRNAs and proteins in the virtual cell space to the Drosophila circadian rhythm. The oscillations of period (per), timeless (tim) and Drosophila Clock ({dClk}) mRNAs and proteins predicted by the simulations agreed with the observed data in Drosophila and were lost with the knock-out of either the per or the dClk gene as observed experimentally. Bio-Object predicts that (1) the stability of dClk mRNA, (2) the stability of dCLK and (3) the affinity of the PER-TIM complex are determinants of the circadian duration.
机译:动机:最近,生物学家通过对RNA干扰,无意义介导的衰变和泛素化的广泛研究,发现转录的mRNA和蛋白质的运输和降解是调节基因表达的至关重要的步骤。但是,过去,在计算机模拟分析中,与转录法规相比,尚未对这些因素进行充分考虑。结果:我们开发了一种生物系统模拟器“ Bio-Object”,并评估了包括运动,稳定性和稳定性在内的众多因素的贡献。虚拟细胞空间中的mRNA和蛋白质的相互作用与果蝇昼夜节律的相互作用。通过模拟预测的周期(per),永恒(tim)和果蝇时钟({dClk})mRNA和蛋白质的振荡与果蝇中观察到的数据一致,并且由于敲除per或dClk基因而丢失如实验观察到的。 Bio-Object预测(1)dClk mRNA的稳定性,(2)dCLK的稳定性和(3)PER-TIM复合物的亲和力是昼夜节律持续时间的决定因素。

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