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The Journal of Organic Chemistry|March 1, 2018
Nanopore Analysis of the 5-Guanidinohydantoin to Iminoallantoin Isomerization in Duplex DNATao Zeng, Aaron M Fleming, Yun Ding, et al.
Journal of the American Chemical Society|December 14, 2018
Effect of Oxidative Damage on Charge and Spin Transport in DNASuryakant Mishra, Vishvendra S Poonia, Claudio Fontanesi, et al.
Faraday Discussions|October 7, 2016
Energetics of base flipping at a DNA mismatch site confined at the latch constriction of α-hemolysinRobert P Johnson, Rukshan T Perera, Aaron M Fleming, et al.
Nanotechnology|January 29, 2015
Detection of benzo[a]pyrene-guanine adducts in single-stranded DNA using the α-hemolysin nanoporeRukshan T Perera, Aaron M Fleming, Robert P Johnson, et al.
Israel Journal of Chemistry|September 21, 2013
Electrical Current Signatures of DNA Base Modifications in Single Molecules Immobilized in the α-Hemolysin Ion ChannelAnna H Wolna, Aaron M Fleming, Na An, et al.
Proceedings of the National Academy of Sciences of the United States of America|March 16, 2019
Transcriptome-wide profiling of multiple RNA modifications simultaneously at single-base resolutionVahid Khoddami, Archana Yerra, Timothy L Mosbruger, et al.
Chemical Research in Toxicology|January 17, 2009
Mechanistic aspects of the formation of guanidinohydantoin from spiroiminodihydantoin under acidic conditionsYu Ye, Barbara H Munk, James G Muller, et al.
Journal of the American Chemical Society|December 4, 2013
Base-excision repair activity of uracil-DNA glycosylase monitored using the latch zone of α-hemolysinQian Jin, Aaron M Fleming, Robert P Johnson, et al.
Journal of the American Chemical Society|November 13, 2013
Reconciliation of chemical, enzymatic, spectroscopic and computational data to assign the absolute configuration of the DNA base lesion spiroiminodihydantoinAaron M Fleming, Anita M Orendt, Yanan He, et al.
Journal of the American Chemical Society|December 9, 2010
Nanopore detection of 8-oxo-7,8-dihydro-2'-deoxyguanosine in immobilized single-stranded DNA via adduct formation to the DNA damage siteAnna E P Schibel, Na An, Qian Jin, et al.
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