Electronic Transport in Single-Stranded DNA Molecule Related to Huntington’s Disease

被引:0
作者
R. G. Sarmento
R. N. O. Silva
M. P. Madeira
N. F. Frazão
J. O. Sousa
A. Macedo-Filho
机构
[1] Universidade Federal do Piauí,Campus Amílcar Ferreira Sobral
[2] Universidade Federal de Campina Grande,Centro de Educação e Saúde
[3] Universidade Estadual do Piauí,Campus Prof. Antonio Geovanne Alves de Sousa
来源
Brazilian Journal of Physics | 2018年 / 48卷
关键词
Electronic transport; DNA; Mutations; Huntington’s disease;
D O I
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中图分类号
学科分类号
摘要
We report a numerical analysis of the electronic transport in single chain DNA molecule consisting of 182 nucleotides. The DNA chains studied were extracted from a segment of the human chromosome 4p16.3, which were modified by expansion of CAG (cytosine-adenine-guanine) triplet repeats to mimics Huntington’s disease. The mutated DNA chains were connected between two platinum electrodes to analyze the relationship between charge propagation in the molecule and Huntington’s disease. The computations were performed within a tight-binding model, together with a transfer matrix technique, to investigate the current-voltage (I–V) of 23 types of DNA sequence and compare them with the distributions of the related CAG repeat numbers with the disease. All DNA sequences studied have a characteristic behavior of a semiconductor. In addition, the results showed a direct correlation between the current-voltage curves and the distributions of the CAG repeat numbers, suggesting possible applications in the development of DNA-based biosensors for molecular diagnostics.
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页码:155 / 159
页数:4
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