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Genome-Wide DNA-Binding Specificity of PIL5, a Arabidopsis Basic Helix-Loop-Helix (bHLH) Transcription Factor

机译:Pil5的基因组DNA结合特异性,拟南芥碱性螺旋环 - 螺旋(BHLH)转录因子

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PIL5 is a member of the bHLH transcription factor super family and plays crucial roles in phytochrome mediated seed germination process in Arabidopsis. While our previous study shows that PIL5 binds to the G-box (CACGTG) motif with high affinity, other attributes must be involved in determining regulatory specificity. In this study we performed a ChIP-chip assay to obtain genome-wide PIL5 binding sites and investigated other attributes which would affect to PIL5 DNA-binding specificity. Our results confirmed that the existence of G-box in promoter region was the most significant binding attribute. Additionally we also found that other attributes such as neighboring motif composition, distance from transcription start site, nucleosome density, DNA methylation and average gene expression were also contributing to PIL5 DNA-binding specificity. The Random Forest classifier using these attributes can classify PIL5 binding sites from non-binding sites with accuracy of 93.05%.
机译:PIL5是BHLH转录因子超级家庭的成员,并在拟南芥中起着至关重要的植物介导的种子萌发过程。虽然我们以前的研究表明,PIL5与高亲和力的G字幕(CacgTG)图案结合,但必须参与确定监管特异性的其他属性。在该研究中,我们进行了芯片芯片测定以获得基因组的Pl5结合位点,并研究了影响Pl5 DNA结合特异性的其他属性。我们的结果证实,启动子区域的G箱存在是最重要的结合属性。此外,我们还发现,诸如相邻的图案组合物的其他属性,距转录开始点的距离,核小体密度,DNA甲基化和平均基因表达也有助于PIL5 DNA结合特异性。使用这些属性的随机林分类器可以将Pil5绑定站点与非绑定站点分类,精度为93.05%。

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