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Parallel multiplex thermodynamic analysis of coaxial base stacking in DNAduplexes by oligodeoxyribonucleotide microchips

机译:寡脱氧核糖核苷酸微芯片对DNA双链体中同轴碱基堆积的平行多重热力学分析

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摘要

Parallel thermodynamic analysis of the coaxial stacking effect of two bases localized in one strand of DNA duplexes has been performed. Oligonucleotides were immobilized in an array of three-dimensional polyacrylamide gel pads of microchips (MAGIChips (TM)). The stacking effect was studied for all combinations of two bases and assessed by measuring the increase in melting temperature and in the free energy of duplexes formed by 5mers stacked to microchip-immobilized 10mers, For any given interface, the effect was studied for perfectly paired bases, as well as terminal mismatches, single base overlaps, single and double gaps, and modified terminal bases, Thermodynamic parameters of contiguous stacking determined by using microchips closely correlated with data obtained in solution, The extension of immobilized oligonucleotides with 5,6-dihydroxyuridine, a urea derivative of deoxyribose, or by phosphate, decreased the stacking effect moderately, while extension with FITC or Texas Red virtually eliminated stacking. The extension of the immobilized oligonucleotides with either acridine or 5-nitroindole increased stacking to mispaired bases and in some GC-rich interfaces. The measurements of stacking parameters were performed in different melting buffers. Although melting temperatures of AT- and CC-rich oligonucleotides in 5 M tetramethylammonium chloride were equalized, the energy of stacking interaction was significantly diminished.
机译:已对位于DNA双链体的一条链中的两个碱基的同轴堆叠效应进行了平行热力学分析。将寡核苷酸固定在微芯片(MAGIChips(TM))的三维三维聚丙烯酰胺凝胶垫阵列中。研究了两种碱基的所有组合的堆叠效应,并通过测量熔融单体和固定有10聚体的5聚体形成的双链体的熔化温度和自由能的增加来评估,对于任何给定的界面,均对完美配对的双聚体的效应进行了研究,以及末端错配,单碱基重叠,单缺口和双缺口以及修饰的末端碱基,通过使用与溶液中获得的数据密切相关的微芯片来确定连续堆叠的热力学参数,用5,6-二羟基尿苷固定化寡核苷酸的延伸,脱氧核糖的尿素衍生物或磷酸盐会适度降低堆积效果,而FITC或Texas Red的延伸实际上消除了堆积效果。用a啶或5-硝基吲哚固定化的寡核苷酸的延伸增加了错配碱基和某些富含GC的界面的堆积。堆积参数的测量是在不同的熔解缓冲液中进行的。尽管富含AT和CC的寡核苷酸在5 M四甲基氯化铵中的融解温度均等,但堆叠相互作用的能量却大大降低了。

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