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A DNA Sensor for Sequencing and Mismatches Based on Electron Transport Through Watson–Crick and Non-Watson–Crick Base Pairs

机译:基于通过沃森-克里克和非沃森-克里克碱基对的电子传输的DNA测序和错配传感器

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摘要

A combined density functional theory and Green''''s function procedure is used to calculate the electrical characteristics of Watson–Crick and non-Watson–Crick base pairs; calculations are performed to determine: the molecular orbitals that participate in the electron-transfer process, junction current-voltage characteristics, density of states, transmission function, and molecular electrostatic potentials. The distinct current-voltage features of base pairs can be used for detecting and sequencing DNA, as well as for detecting DNA base-pair mismatches by passing the double strand through two perpendicular metallic electrodes to the DNA, or by scanning the double strand with conducting probes. We find in the range from $-$1 to 1 V for the Watson–Crick pairs that the CG is a better electron conductor than the AT and, on the other hand, the best and worst conductors are the non-Watson–Crick mismatches CT and AA, respectively.
机译:结合了密度泛函理论和格林函数程序来计算沃森-克里克和非沃森-克里克碱基对的电学特性;进行计算以确定:参与电子转移过程的分子轨道,结电流-电压特性,状态密度,传输函数和分子静电势。碱基对的独特电流-电压特征可用于检测和测序DNA,以及通过使双链穿过两个垂直的金属电极到达DNA或通过用导电性扫描双链来检测DNA碱基对错配。探针。我们发现,在Watson-Crick对的从$-$ 1到1 V的范围内,CG比AT是更好的电子导体,另一方面,最佳和最差的导体是非Watson-Crick不匹配CT和AA。

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