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DNA Structural Properties in the Classification of Genomic Transcription Regulation Elements

机译:基因组转录调控元件分类中的DNA结构特性

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摘要

It has been long known that DNA molecules encode information at various levels. The most basic level comprises the base sequence itself and is primarily important for the encoding of proteins and direct base recognition by DNA-binding proteins. A more elusive level consists of the local structural properties of the DNA molecule wherein the DNA sequence only plays an indirect supportive role. These properties are nevertheless an important factor in a large number of biomolecular processes and can be considered as informative signals for the presence of a variety of genomic features. Several recent studies have unequivocally shown the benefit of relying on such DNA properties for modeling and predicting genomic features as diverse as transcription start sites, transcription factor binding sites, or nucleosome occupancy. This review is meant to provide an overview of the key aspects of these DNA conformational and physicochemical properties. To illustrate their potential added value compared to relying solely on the nucleotide sequence in genomics studies, we discuss their application in research on transcription regulation mechanisms as representative cases.
机译:众所周知,DNA分子以各种水平编码信息。最基本的水平包括碱基序列本身,并且对于蛋白质的编码和DNA结合蛋白的直接碱基识别至关重要。更难以捉摸的水平是DNA分子的局部结构特性,其中DNA序列仅起间接支持作用。然而,这些性质是许多生物分子过程中的重要因素,并且可以被认为是存在各种基因组特征的信息信号。最近的一些研究明确表明了依靠这种DNA特性来建模和预测诸如转录起始位点,转录因子结合位点或核小体占有率之类的基因组特征的好处。这篇综述旨在概述这些DNA构象和物理化学特性的关键方面。为了说明在基因组学研究中与仅依赖核苷酸序列相比它们的潜在附加值,我们讨论了它们在代表代表性案例的转录调控机制研究中的应用。

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