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首页> 外文期刊>Nucleic acids research >Parallel thermodynamic analysis of duplexes on oligodeoxyribonucleotide microchips
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Parallel thermodynamic analysis of duplexes on oligodeoxyribonucleotide microchips

机译:寡脱氧核糖核苷酸微芯片上双链体的平行热力学分析

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摘要

A microchip method has been developed for massive and parallel thermodynamic analyses of DNA duplexes. Fluorescently labeled oligonucleotides were hybridized with oligonucleotides immobilized in the 100 × 100 × 20 μm gel pads of the microchips. The equilibrium melting curves for all microchip duplexes were measured in real time in parallel for all microchip duplexes. Thermodynamic data for perfect and mismatched duplexes that were obtained using the microchip method directly correlated with data obtained in solution. Fluorescent labels or longer linkers between the gel and the oligonucleotides appeared to have no significant effect on duplex stability. Extending the immobilized oligonucleotides with a four-base mixture from the 3′-end or one or two universal bases (5-nitroindole) from the 3′- and/or 5′-end increased the stabilities of their duplexes. These extensions were applied to increase the stabilities of the duplexes formed with short oligonucleotides in microchips, to significantly lessen the differences in melting curves of the AT- and GC-rich duplexes, and to improve discrimination of perfect duplexes from those containing poorly recognized terminal mismatches. This study explored a way to increase the efficiency of sequencing by hybridization on oligonucleotide microchips.
机译:已经开发了用于对DNA双链体进行大规模和平行热力学分析的微芯片方法。将荧光标记的寡核苷酸与固定在微芯片100×100×20μm凝胶垫中的寡核苷酸杂交。对于所有微芯片双工,实时并行地实时测量所有微芯片双工的平衡熔化曲线。使用微芯片方法获得的完美和不匹配双链体的热力学数据与溶液中获得的数据直接相关。凝胶和寡核苷酸之间的荧光标记或更长的连接子似乎对双链体稳定性没有显着影响。用来自3'-末端的四碱基混合物或来自3'-和/或5'-末端的一个或两个通用碱基(5-硝基吲哚)延伸固定的寡核苷酸,可增加其双链体的稳定性。这些扩展用于提高由微芯片中的短寡核苷酸形成的双链体的稳定性,显着减少富含AT和GC的双链体的熔解曲线差异,并改善对完美双链体与那些末端识别不正确的双链体的区分。 。这项研究探索了一种通过在寡核苷酸微芯片上杂交来提高测序效率的方法。

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