Issue 19, 2014

Probing molecular pathways for DNA orientational trapping, unzipping and translocation in nanopores by using a tunable overhang sensor

Abstract

Nanopores provide a unique single-molecule platform for genetic and epigenetic detection. The target nucleic acids can be accurately analyzed by characterizing their specific electric fingerprints or signatures in the nanopore. Here we report a series of novel nanopore signatures generated by target nucleic acids that are hybridized with a probe. A length-tunable overhang appended to the probe functions as a sensor to specifically modulate the nanopore current profile. The resulting signatures can reveal multiple mechanisms for the orientational trapping, unzipping, escaping and translocation of nucleic acids in the nanopore. This universal approach can be used to program various molecular movement pathways, elucidate their kinetics, and enhance the sensitivity and specificity of the nanopore sensor for nucleic acid detection.

Graphical abstract: Probing molecular pathways for DNA orientational trapping, unzipping and translocation in nanopores by using a tunable overhang sensor

Supplementary files

Article information

Article type
Paper
Submitted
10 Jun 2014
Accepted
25 Jul 2014
First published
25 Jul 2014

Nanoscale, 2014,6, 11372-11379

Author version available

Probing molecular pathways for DNA orientational trapping, unzipping and translocation in nanopores by using a tunable overhang sensor

Y. Wang, K. Tian, L. L. Hunter, B. Ritzo and L. Gu, Nanoscale, 2014, 6, 11372 DOI: 10.1039/C4NR03195D

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