DNA Translocation through Hybrid Bilayer Nanopores

Balasubramanian, Ramkumar ; Pal, Sohini ; Joshi, Himanshu ; Rao, Anjana ; Naik, Akshay ; Varma, Manoj ; Chakraborty, Banani ; Maiti, Prabal K. (2019) DNA Translocation through Hybrid Bilayer Nanopores Journal of Physical Chemistry C, 123 (18). pp. 11908-11916. ISSN 1932-7447

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Official URL: http://doi.org/10.1021/acs.jpcc.9b00399

Related URL: http://dx.doi.org/10.1021/acs.jpcc.9b00399

Abstract

Pore functionalization has been explored by several groups as a strategy to control DNA translocation through solid-state nanopores. Here we present a hybrid nanopore system consisting of single-layer graphene and a DNA origami layer to achieve base-selective control of DNA translocation rate through aligned nanopores of the two layers. This is achieved by incorporating unpaired dangling bases called overhangs to the origami near the pore region. Molecular dynamics simulations were used to optimize the design of the origami nanopore and the overhangs. Specifically, we considered the influence of the number and spatial distribution of overhangs on translocation times. The simulations revealed that specific interactions between the overhangs and the translocating single-stranded DNA resulted in base-specific residence times.

Item Type:Article
Source:Copyright of this article belongs to American Chemical Society.
ID Code:123964
Deposited On:26 Oct 2021 06:30
Last Modified:26 Oct 2021 06:30

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