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Deciphering histone code of transcriptional regulation in malaria parasites by large-scale data mining

机译:大规模数据挖掘破译疟原虫转录调控的组蛋白密码

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Histone modifications play a major role in the regulation of gene expression. Accumulated evidence has shown that histone modifications mediate biological processes such as transcription cooperatively. This has led to the hypothesis of 'histone code' which suggests that combinations of different histone modifications correspond to unique chromatin states and have distinct functions. In this paper, we propose a framework based on association rule mining to discover the potential regulatory relations between histone modifications and gene expression in Plasmodium falciparum. Our approach can output rules with statistical significance. Some of the discovered rules are supported by literature of experimental results. Moreover, we have also discovered de novo rules which can guide further research in epigenetic regulation of transcription. Based on our association rules we build a model to predict gene expression, which outperforms a published Bayesian network model for gene expression prediction by histone modifications. The results of our study reveal mechanisms for histone modifications to regulate transcription in large-scale. Among our findings, the cooperation among histone modifications provides new evidence for the hypothesis of histone code. Furthermore, the rules output by our method can be used to predict the change of gene expression.
机译:组蛋白修饰在基因表达的调节中起主要作用。积累的证据表明,组蛋白修饰可协同介导诸如转录的生物学过程。这导致了“组蛋白编码”的假说,该假说表明不同组蛋白修饰的组合对应于独特的染色质状态并具有独特的功能。在本文中,我们提出了一个基于关联规则挖掘的框架,以发现恶性疟原虫中组蛋白修饰与基因表达之间的潜在调控关系。我们的方法可以输出具有统计意义的规则。一些发现的规则得到实验结果文献的支持。此外,我们还发现了从头规则,可以指导转录的表观遗传调控的进一步研究。基于我们的关联规则,我们建立了一个预测基因表达的模型,该模型优于通过组蛋白修饰预测基因表达的贝叶斯网络模型。我们的研究结果揭示了组蛋白修饰的机制,以大规模调控转录。在我们的发现中,组蛋白修饰之间的合作为组蛋白编码的假设提供了新的证据。此外,我们方法输出的规则可用于预测基因表达的变化。

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