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Nature Biotechnology|October 27, 2022
Quantitative sequencing using BID-seq uncovers abundant pseudouridines in mammalian mRNA at base resolutionQing Dai, Li-Sheng Zhang, Hui-Lung Sun, et al.Nucleic Acids Research|October 29, 2020
Tethering-facilitated DNA 'opening' and complementary roles of β-hairpin motifs in the Rad4/XPC DNA damage sensor proteinDebamita Paul, Hong Mu, Amirrasoul Tavakoli, et al.Journal of the American Chemical Society|March 25, 2014
A TET homologue protein from Coprinopsis cinerea (CcTET) that biochemically converts 5-methylcytosine to 5-hydroxymethylcytosine, 5-formylcytosine, and 5-carboxylcytosineLiang Zhang, Weizhong Chen, Lakshminarayan M Iyer, et al.Nature|November 12, 2010
Iron-catalysed oxidation intermediates captured in a DNA repair dioxygenaseChengqi Yi, Guifang Jia, Guanhua Hou, et al.Nucleic Acids Symposium Series (2004)|September 15, 2009
Chemical methods to study protein-nucleic acid interactionsChuan HeAngewandte Chemie (International Ed. in English)|December 11, 2014
High-resolution N(6) -methyladenosine (m(6) A) map using photo-crosslinking-assisted m(6) A sequencingKai Chen, Zhike Lu, Xiao Wang, et al.Journal of the American Chemical Society|November 9, 2017
N<sup>6</sup>-Allyladenosine: A New Small Molecule for RNA Labeling Identified by Mutation AssayXiao Shu, Qing Dai, Tong Wu, et al.Nature Chemical Biology|October 18, 2011
N6-methyladenosine in nuclear RNA is a major substrate of the obesity-associated FTOGuifang Jia, Ye Fu, Xu Zhao, et al.Nature Biotechnology|January 3, 2024
Ultrafast bisulfite sequencing detection of 5-methylcytosine in DNA and RNAQing Dai, Chang Ye, Iryna Irkliyenko, et al.Pageof 227