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Prediction and Validation of Transcription Factors Modulating the Expression of Sestrin3 Gene Using an Integrated Computational and Experimental Approach

机译:预测和验证转录因子调节Sestrin3基因表达的使用计算和实验的综合方法。

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摘要

SESN3 has been implicated in multiple biological processes including protection against oxidative stress, regulation of glucose and lipid metabolism. However, little is known about the factors and mechanisms controlling its gene expression at the transcriptional level. We performed in silico phylogenetic footprinting analysis of 5 kb upstream regions of a diverse set of human SESN3 orthologs for the identification of high confidence conserved binding motifs (BMo). We further analyzed the predicted BMo by a motif comparison tool to identify the TFs likely to bind these discovered motifs. Predicted TFs were then integrated with experimentally known protein-protein interactions and experimentally validated to delineate the important transcriptional regulators of SESN3. Our study revealed high confidence set of BMos (integrated with DNase I hypersensitivity sites) in the upstream regulatory regions of SESN3 that could be bound by transcription factors from multiple families including FOXOs, SMADs, SOXs, TCFs and HNF4A. TF-TF network analysis established hubs of interaction that include SMAD3, TCF3, SMAD2, HDAC2, SOX2, TAL1 and TCF12 as well as the likely protein complexes formed between them. We show using ChIP-PCR as well as over-expression and knock out studies that FOXO3 and SOX2 transcriptionally regulate the expression of SESN3 gene. Our findings provide an important roadmap to further our understanding on the regulation of SESN3.
机译:SESN3与多种生物过程有关,包括抗氧化应激,调节葡萄糖和脂质代谢。但是,关于在转录水平上控制其基因表达的因素和机制知之甚少。我们对人类SESN3直系同源物的不同集合的5 kb上游区域进行了计算机系统发育足迹分析,以鉴定高信度保守结合基序(BMo)。我们通过基序比较工具进一步分析了预测的BMo,以识别可能结合这些发现的基序的TF。然后将预测的TF与实验上已知的蛋白质-蛋白质相互作用整合在一起,并通过实验验证来描绘SESN3的重要转录调节因子。我们的研究揭示了SESN3上游调控区中高浓度的BMos(与DNase I超敏位点整合),可能受到来自多个家族(包括FOXO,SMAD,SOX,TCF和HNF4A)的转录因子的束缚。 TF-TF网络分析建立了相互作用的枢纽,包括SMAD3,TCF3,SMAD2,HDAC2,SOX2,TAL1和TCF12以及它们之间形成的可能的蛋白质复合物。我们展示了使用ChIP-PCR以及过度表达和敲除 FOXO3 SOX2 转录调控SESN3基因表达的研究。我们的发现为进一步理解 SESN3 的调控提供了重要的路线图。

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