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首页> 外文期刊>Nucleic Acids Research >Large-scale structural analysis of the core promoter in mammalian and plant genomes
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Large-scale structural analysis of the core promoter in mammalian and plant genomes

机译:哺乳动物和植物基因组中核心启动子的大规模结构分析

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摘要

DNA encodes at least two independent levels of functional information. The first level is for encoding proteins and sequence targets for DNA-binding factors, while the second one is contained in the physical and structural properties of the DNA molecule itself. Although the physical and structural properties are ultimately determined by the nucleotide sequence itself, the cell exploits these properties in a way in which the sequence itself plays no role other than to support or facilitate certain spatial structures. In this work, we focus on these structural properties, comparing them between different organisms and assessing their ability to describe the core promoter. We prove the existence of distinct types of core promoters, based on a clustering of their structural profiles. These results indicate that the structural profiles are much conserved within plants (Arabidopsis and rice) and animals (human and mouse), but differ considerably between plants and animals. Furthermore, we demonstrate that these structural profiles can be an alternative way of describing the core promoter, in addition to more classical motif or IUPAC-based approaches. Using the structural profiles as discriminatory elements to separate promoter regions from non-promoter regions, reliable models can be built to identify core-promoter regions using a strictly computational approach.
机译:DNA编码至少两个独立级别的功能信息。第一个级别用于编码蛋白质和DNA结合因子的序列靶标,而第二个级别包含在DNA分子本身的物理和结构特性中。尽管物理和结构特性最终由核苷酸序列本身决定,但细胞利用这些特性的方式是,序列本身除了支持或促进某些空间结构外不发挥任何作用。在这项工作中,我们专注于这些结构特性,将它们在不同生物之间进行比较,并评估它们描述核心启动子的能力。我们基于其结构概况的聚类证明了核心启动子的不同类型的存在。这些结果表明,在植物(拟南芥和水稻)和动物(人和小鼠)中,结构轮廓是非常保守的,但在植物和动物之间却存在很大差异。此外,我们证明这些结构轮廓可以是描述核心启动子的替代方法,除了更经典的图案或基于IUPAC的方法外。使用结构轮廓作为区分启动子区域和非启动子区域的区分元素,可以使用严格的计算方法建立可靠的模型来识别核心启动子区域。

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