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Biological consequences of tightly bent DNA: The other life of a macromolecular celebrity

机译:紧密弯曲的DNA的生物学后果:大分子名人的另一生

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The mechanical properties of DNA play a critical role in many biological functions. For example, DNA packing in viruses involves confining the viral genome in a volume (the viral capsid) with dimensions that are comparable to the DNA persistence length. Similarly, eukaryotic DNA is packed in DNA-protein complexes (nucleosomes), in which DNA is tightly bent around protein spools. DNA is also tightly bent by many proteins that regulate transcription, resulting in a variation in gene expression that is amenable to quantitative analysis. In these cases, DNA loops are formed with lengths that are comparable to or smaller than the DNA persistence length. The aim of this review is to describe the physical forces associatede with tightly bent DNA in all of these settings and to explore the biological consequences of such bending, as increasingly accessible by single-molecule techniques. (c) 2006 Wiley Periodicals, Inc.
机译:DNA的机械特性在许多生物学功能中起着至关重要的作用。例如,病毒中的DNA包装涉及将病毒基因组限制在一定体积(病毒衣壳)中,其大小可与DNA持久长度相媲美。同样,真核DNA被包装在DNA-蛋白质复合物(核小体)中,其中DNA紧紧围绕蛋白质线轴弯曲。 DNA也被许多调节转录的蛋白质紧紧地弯曲,导致基因表达的变化,适合定量分析。在这些情况下,形成的DNA环的长度与DNA持久性长度相当或更小。这篇综述的目的是描述在所有这些情况下与紧密弯曲的DNA相关的物理力,并探讨这种弯曲的生物学后果,因为单分子技术越来越容易获得这种弯曲。 (c)2006年Wiley Periodicals,Inc.

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