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首页> 外文期刊>Quarterly Reviews of Biophysics >The unique structure of A-tracts and intrinsic DNA bending
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The unique structure of A-tracts and intrinsic DNA bending

机译:A道的独特结构和固有的DNA弯曲

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摘要

Short runs of adenines are a ubiquitous DNA element in regulatory regions of many organisms. When runs of 4-6 adenine base pairs ('A-tracts') are repeated with the helical periodicity, they give rise to global curvature of the DNA double helix, which can be macroscopically characterized by anomalously slow migration on polyacrylamide gels. The molecular structure of these DNA tracts is unusual and distinct from that of canonical B-DNA. We review here our current knowledge about the molecular details of A-tract structure and its interaction with sequences flanking them of either side and with the environment. Various molecular models were proposed to describe A-tract structure and how it causes global deflection of the DNA helical axis. We review old and recent findings that enable us to amalgamate the various findings to one model that conforms to the experimental data. Sequences containing phased repeats of A-tracts have from the very beginning been synonymous with global intrinsic DNA bending. In this review, we show that very often it is the unique structure of A-tracts that is at the basis of their widespread occurrence in regulatory regions of many organisms. Thus, the biological importance of A-tracts may often be residing in their distinct structure rather than in the global curvature that they induce on sequences containing them.
机译:短期腺嘌呤是许多生物体调节区域中普遍存在的DNA元素。当以螺旋周期重复运行4-6个腺嘌呤碱基对(“ A片段”)时,它们会引起DNA双螺旋的整体曲率,这在宏观上可以用聚丙烯酰胺凝胶上异常缓慢的迁移为特征。这些DNA片段的分子结构是不同寻常的,并且不同于规范的B-DNA。我们在这里回顾我们当前关于A区域结构的分子细节及其与两侧或与环境相邻的序列相互作用的知识。提出了各种分子模型来描述A形结构及其如何引起DNA螺旋轴的整体偏转。我们回顾了旧的和最近的发现,使我们能够将各种发现合并到一个符合实验数据的模型中。从一开始,包含A阶段分阶段重复序列的序列就已经成为整体固有DNA弯曲的代名词。在这篇综述中,我们表明,A道的独特结构常常是它们在许多生物的调节区域中广泛出现的基础。因此,A谱的生物学重要性通常可能在于其独特的结构,而不是它们在包含它们的序列上诱导的整体曲率。

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