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Photochemical analysis of structural transitions in DNA liquid crystals reveals differences in spatial structure of DNA molecules organized in liquid crystalline form

机译:对DNA液晶中结构转变的光化学分析揭示了以液晶形式组织的DNA分子的空间结构差异

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The anisotropic shape of DNA molecules allows them to form lyotropic liquid crystals (LCs) at high concentrations. This liquid crystalline arrangement is also found in vivo (e.g., in bacteriophage capsids, bacteria or human sperm nuclei). However, the role of DNA liquid crystalline organization in living organisms still remains an open question. Here we show that in vitro, the DNA spatial structure is significantly changed in mesophases compared to non-organized DNA molecules. DNA LCs were prepared from pBluescript SK (pBSK) plasmid DNA and investigated by photochemical analysis of structural transitions (PhAST). We reveal significant differences in the probability of UV-induced pyrimidine dimer photoproduct formation at multiple loci on the DNA indicative of changes in major groove architecture.
机译:DNA分子的各向异性形状使它们可以形成高浓度的溶致液晶(LCs)。这种液晶排列也在体内(例如,在噬菌体衣壳,细菌或人精子核中)被发现。然而,DNA液晶组织在活生物体中的作用仍然是一个悬而未决的问题。在这里,我们显示了在体外,与无组织的DNA分子相比,在中间相中DNA的空间结构发生了显着变化。从pBluescript SK(pBSK)质粒DNA制备DNA LC,并通过结构转变的光化学分析(PhAST)进行研究。我们揭示了在DNA上多个基因座上的紫外线诱导的嘧啶二聚体光产物形成的概率上的显着差异,指示了主要凹槽结构的变化。

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