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Electrical detection of the temperature induced melting transition of a DNA hairpin covalently attached to gold interdigitated microelectrodes

机译:电检测温度诱导的DNA发夹共价连接至金指状微电极的熔融转变

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摘要

The temperature induced melting transition of a self-complementary DNA strand covalently attached at the 5′ end to the surface of a gold interdigitated microelectrode (GIME) was monitored in a novel, label-free, manner. The structural state of the hairpin was assessed by measuring four different electronic properties of the GIME (capacitance, impedance, dissipation factor and phase angle) as a function of temperature from 25°C to 80°C. Consistent changes in all four electronic properties of the GIME were observed over this temperature range, and attributed to the transition of the attached single-stranded DNA (ssDNA) from an intramolecular, folded hairpin structure to a melted ssDNA. The melting curve of the self-complementary single strand was also measured in solution using differential scanning calorimetry (DSC) and UV absorbance spectroscopy. Temperature dependent electronic measurements on the surface and absorbance versus temperature values measured in solution experiments were analyzed assuming a two-state process. The model analysis provided estimates of the thermodynamic transition parameters of the hairpin on the surface. Two-state analyses of optical melting data and DSC measurements provided evaluations of the thermodynamic transition parameters of the hairpin in solution. Comparison of surface and solution measurements provided quantitative evaluation of the effect of the surface on the thermodynamics of the melting transition of the DNA hairpin.
机译:以新颖的,无标记的方式监测了温度诱导的在5'端共价附着于金指状微电极(GIME)表面的自互补DNA链的熔解转变。通过测量GIME的四个不同电子特性(电容,阻抗,耗散因数和相角)随温度从25°C到80°C的变化,评估发夹的结构状态。在此温度范围内观察到GIME的所有四个电子特性的一致性变化,这归因于附着的单链DNA(ssDNA)从分子内折叠的发夹结构过渡到熔融的ssDNA。还使用差示扫描量热法(DSC)和紫外吸收光谱法在溶液中测量了自身互补单链的熔解曲线。假定为两态过程,分析了表面上与温度相关的电子测量值以及在溶液实验中测得的吸光度与温度的关系。模型分析提供了表面上发夹的热力学转变参数的估计。光学熔融数据和DSC测量的两态分析提供了溶液中发夹的热力学转变参数的评估。表面和溶液测量的比较提供了表面对DNA发夹的熔融转变的热力学的影响的定量评估。

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