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拟南芥基因组中生长素响应元件的计算分析

Computational analysis of auxin responsive elements in the Arabidopsis thaliana L. genome.

作者信息

Mironova Victoria V, Omelyanchuk Nadezda A, Wiebe Daniil S, Levitsky Victor G

出版信息

BMC Genomics. 2014;15 Suppl 12(Suppl 12):S4. doi: 10.1186/1471-2164-15-S12-S4. Epub 2014 Dec 19.

Abstract

Auxin responsive elements (AuxRE) were found in upstream regions of target genes for ARFs (Auxin response factors). While Chip-seq data for most of ARFs are still unavailable, prediction of potential AuxRE is restricted by consensus models that detect too many false positive sites. Using sequence analysis of experimentally proven AuxREs, we revealed both an extended nucleotide context pattern for AuxRE itself and three distinct types of its coupling motifs (Y-patch, AuxRE-like, and ABRE-like), which together with AuxRE may form the composite elements. Computational analysis of the genome-wide distribution of the predicted AuxREs and their impact on auxin responsive gene expression allowed us to conclude that: (1) AuxREs are enriched around the transcription start site with the maximum density in 5'UTR; (2) AuxREs mediate auxin responsive up-regulation, not down-regulation. (3) Directly oriented single AuxREs and reverse multiple AuxREs are mostly associated with auxin responsiveness. In the composite AuxRE elements associated with auxin response, ABRE-like and Y-patch are 5'-flanking or overlapping AuxRE, whereas AuxRE-like motif is 3'-flanking. The specificity in location and orientation of the coupling elements suggests them as potential binding sites for ARFs partners.

摘要

在生长素响应因子(ARFs)的靶基因上游区域发现了生长素响应元件(AuxRE)。虽然大多数ARFs的染色质免疫沉淀测序(Chip-seq)数据仍然无法获得,但潜在AuxRE的预测受到共识模型的限制,这些模型检测到太多假阳性位点。通过对经过实验验证的AuxREs进行序列分析,我们揭示了AuxRE本身的扩展核苷酸上下文模式及其三种不同类型的偶联基序(Y-补丁、AuxRE样和ABRE样),它们与AuxRE一起可能形成复合元件。对预测的AuxREs在全基因组范围的分布及其对生长素响应基因表达的影响进行计算分析后,我们得出以下结论:(1)AuxREs在转录起始位点周围富集,在5'非翻译区(5'UTR)密度最高;(2)AuxREs介导生长素响应性上调,而非下调。(3)直接定向的单个AuxREs和反向多个AuxREs大多与生长素响应性相关。在与生长素响应相关的复合AuxRE元件中,ABRE样和Y-补丁位于AuxRE的5'侧翼或与其重叠,而AuxRE样基序位于3'侧翼。偶联元件在位置和方向上的特异性表明它们可能是ARFs伙伴的潜在结合位点。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/83d8/4331925/20370b15ef43/1471-2164-15-S12-S4-1.jpg

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