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首页> 外文期刊>PLoS One >DeepSRE: Identification of sterol responsive elements and nuclear transcription factors Y proximity in human DNA by Convolutional Neural Network analysis
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DeepSRE: Identification of sterol responsive elements and nuclear transcription factors Y proximity in human DNA by Convolutional Neural Network analysis

机译:深度:卷积神经网络分析鉴定甾醇响应元件和核转录因子Y邻近人类DNA的邻近

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SREBP1 and 2, are cholesterol sensors able to modulate cholesterol-related gene expression responses. SREBPs binding sites are characterized by the presence of multiple target sequences as SRE, NFY and SP1, that can be arranged differently in different genes, so that it is not easy to identify the binding site on the basis of direct DNA sequence analysis. This paper presents a complete workflow based on a one-dimensional Convolutional Neural Network (CNN) model able to detect putative SREBPs binding sites irrespective of target elements arrangements. The strategy is based on the recognition of SRE linked (less than 250 bp) to NFY sequences according to chromosomal localization derived from TF Immunoprecipitation (TF ChIP) experiments. The CNN is trained with several 100 bp sequences containing both SRE and NF-Y. Once trained, the model is used to predict the presence of SRE-NFY in the first 500 bp of all the known gene promoters. Finally, genes are grouped according to biological process and the processes enriched in genes containing SRE-NFY in their promoters are analyzed in details. This workflow allowed to identify biological processes enriched in SRE containing genes not directly linked to cholesterol metabolism and possible novel DNA patterns able to fill in for missing classical SRE sequences.
机译:Srebp1和2,是能够调节胆固醇相关基因表达反应的胆固醇传感器。 Srebps结合位点的特征在于存在多个靶序列作为SRE,NFY和SP1,其可以在不同基因中不同地布置,因此在直接DNA序列分析的基础上识别结合位点是不容易的。本文基于一维卷积神经网络(CNN)模型,提供了一种完整的工作流,其能够检测推定的Srebps绑定位点,而不管目标元素的布置。该策略根据染色体定位识别来自TF免疫沉淀(TF芯片)实验的染色体定位的SRE链接(少于250bp)到NFY序列。 CNN培训,其中包含含有SRE和NF-Y的几种100bp序列。曾经接受过培训,该模型用于预测所有已知基因启动子的前500bp中SRE-NFY的存在。最后,基因根据生物过程分组,并详细分析在其启动子中含有SRE-NFY的基因的方法。这种工作流程允许鉴定富含SRE的生物方法,该方法没有直接与胆固醇代谢的基因和能够填充缺失的古典SRE序列的新型DNA模式。

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