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Faithful modeling of transient expression and its application to elucidating negative feedback regulation

机译:瞬时表达的真实建模及其在阐明负反馈调节中的应用

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Modeling and analysis of genetic regulatory networks is essential both for better understanding their dynamic behavior and for elucidating and refining open issues. We hereby present a discrete computational model that effectively describes the transient and sequential expression of a network of genes in a representative developmental pathway. Our model system is a transcriptional cascade that includes positive and negative feedback loops directing the initiation and progression through meiosis in budding yeast. The computational model allows qualitative analysis of the transcription of early meiosis-specific genes, specifically, Ime2 and their master activator, Ime1. The simulations demonstrate a robust transcriptional behavior with respect to the initial levels of Ime1 and Ime2. The computational results were verified experimentally by deleting various genes and by changing initial conditions. The model has a strong predictive aspect, and it provides insights into how to distinguish among and reason about alternative hypotheses concerning the mode by which negative regulation through Ime1 and Ime2 is accomplished. Some predictions were validated experimentally, for instance, showing that the decline in the transcription of IME1 depends on Rpd3, which is recruited by Ime1 to its promoter. Finally, this general model promotes the analysis of systems that are devoid of consistent quantitative data, as is often the case, and it can be easily adapted to other developmental pathways.
机译:遗传监管网络的建模和分析对于更好地了解其动态行为以及阐明和完善未解决的问题都是至关重要的。我们在此提出了一个离散的计算模型,该模型有效地描述了具有代表性的发育途径中基因网络的瞬时表达和顺序表达。我们的模型系统是一个转录级联,其中包括正反馈和负反馈环,这些环指导萌芽酵母中减数分裂的启动和进展。该计算模型允许定性分析早期减数分裂特异基因,特别是Ime2及其主激活因子Ime1的转录。模拟显示了相对于Ime1和Ime2初始水平的鲁棒转录行为。通过删除各种基因和改变初始条件,实验验证了计算结果。该模型具有很强的预测性,它为如何区分通过Ime1和Ime2进行负面调节的模式的替代假设及其原因提供了见解。例如,通过实验验证了一些预测,表明IME1转录的下降取决于Rpd3,Rpd3被Ime1募集到其启动子。最后,这种通用模型可以促进对缺乏一致定量数据的系统的分析(通常是这种情况),并且可以轻松地使其适应其他发展途径。

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