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The Human Telomere Sequence (TTAGGG)4 in the Absence and Presence of Cosolutes: A Spectroscopic Investigation

机译:在不存在和存在溶质的情况下人类端粒序列(TTAGGG)4:光谱学研究

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摘要

Historically, biophysical studies of nucleic acids have been carried out under near ideal conditions, i.e., low buffer concentration (e.g., 10 mM phosphate), pH 7, low ionic strength (e.g., 100 mM) and, for optical studies, low concentrations of DNA (e.g., 1 × 10−6 M). Although valuable structural and thermodynamic data have come out of these studies, the conditions, for the most, part, are inadequate to simulate realistic cellular conditions. The increasing interest in studying biomolecules under more cellular-like conditions prompted us to investigate the effect of osmotic stress on the structural and thermodynamic properties of DNA oligomers containing the human telomere sequence (TTAGGG). Here, we report the characterization of (TTAGGG)4 in potassium phosphate buffer with increasing percent PEG (polyethylene glycol) or acetonitrile. In general, the presence of these cosolutes induces a conformational change from a unimolecular hybrid structure to a multimolecular parallel stranded structure. Hence, the structural change is accompanied with a change in the molecularity of quadruplex formation.
机译:历史上,核酸的生物物理研究是在接近理想的条件下进行的,即低缓冲液浓度(例如10 mM磷酸盐),pH 7,低离子强度(例如100 mM)以及光学研究中低浓度的DNA(例如1×10 -6 M)。尽管从这些研究中获得了有价值的结构和热力学数据,但大多数情况下这些条件不足以模拟现实的细胞条件。对在更多细胞样条件下研究生物分子的兴趣日益浓厚,促使我们研究了渗透胁迫对含有人端粒序列(TTAGGG)的DNA低聚物的结构和热力学性质的影响。在这里,我们报道了随着PEG(聚乙二醇)或乙腈百分比的增加,磷酸钾缓冲液中(TTAGGG)4的表征。通常,这些固溶体的存在引起从单分子杂化结构到多分子平行链结构的构象变化。因此,结构变化伴随着四链体形成分子的变化。

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