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Revealing cell cycle control by combining model-based detection of periodic expression with novel cis-regulatory descriptors

机译:通过将基于模型的周期表达检测与新型顺式调控描述符相结合,揭示细胞周期控制

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Background We address the issue of explaining the presence or absence of phase-specific transcription in budding yeast cultures under different conditions. To this end we use a model-based detector of gene expression periodicity to divide genes into classes depending on their behavior in experiments using different synchronization methods. While computational inference of gene regulatory circuits typically relies on expression similarity (clustering) in order to find classes of potentially co-regulated genes, this method instead takes advantage of known time profile signatures related to the studied process. Results We explain the regulatory mechanisms of the inferred periodic classes with cis-regulatory descriptors that combine upstream sequence motifs with experimentally determined binding of transcription factors. By systematic statistical analysis we show that periodic classes are best explained by combinations of descriptors rather than single descriptors, and that different combinations correspond to periodic expression in different classes. We also find evidence for additive regulation in that the combinations of cis-regulatory descriptors associated with genes periodically expressed in fewer conditions are frequently subsets of combinations associated with genes periodically expression in more conditions. Finally, we demonstrate that our approach retrieves combinations that are more specific towards known cell-cycle related regulators than the frequently used clustering approach. Conclusion The results illustrate how a model-based approach to expression analysis may be particularly well suited to detect biologically relevant mechanisms. Our new approach makes it possible to provide more refined hypotheses about regulatory mechanisms of the cell cycle and it can easily be adjusted to reveal regulation of other, non-periodic, cellular processes.
机译:背景我们解决了解释在不同条件下发芽的酵母培养物中是否存在阶段特异性转录的问题。为此,我们使用基于模型的基因表达周期性检测器,根据基因在使用不同同步方法的实验中的行为,将基因分为几类。尽管基因调控电路的计算推断通常依赖于表达相似性(聚类)来寻找潜在的共同调控基因的类别,但该方法却利用了与研究过程相关的已知时间分布特征。结果我们用顺式调节描述符解释了推断的周期性类别的调节机制,该描述符将上游序列基序与实验确定的转录因子结合相结合。通过系统的统计分析,我们表明,周期类别最好用描述符的组合而不是单个描述符来解释,并且不同的组合对应于不同类别中的周期表达式。我们还发现了加性调节的证据,因为与在较少条件下周期性表达的基因相关的顺式调控描述符的组合通常是与在更多条件下周期性表达的基因相关的组合的子集。最后,我们证明了我们的方法比常用的聚类方法检索对已知细胞周期相关调节剂更特定的组合。结论结果表明,基于模型的表达分析方法可能特别适合于检测生物学相关机制。我们的新方法可以提供有关细胞周期调控机制的更完善的假设,并且可以轻松调整以揭示其他非周期性细胞过程的调控。

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