Nanoelectromechanics of Methylated DNA in a Synthetic Nanopore |
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Authors: | U. Mirsaidov X. Zou V. Dimitrov A.P. Feinberg |
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Affiliation: | † Beckman Institute, University of Illinois at Urbana-Champaign, Urbana, Illinois ‡ School of Medicine, The Johns Hopkins University, Baltimore, Maryland § School of Physics, Peking University, Beijing, China |
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Abstract: | Methylation of cytosine is a covalent modification of DNA that can be used to silence genes, orchestrating a myriad of biological processes including cancer. We have discovered that a synthetic nanopore in a membrane comparable in thickness to a protein binding site can be used to detect methylation. We observe a voltage threshold for permeation of methylated DNA through a <2 nm diameter pore, which we attribute to the stretching transition; this can differ by >1 V/20 nm depending on the methylation level, but not the DNA sequence. |
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