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Chemical Communications (Cambridge, England)|January 23, 2004
The intramolecular Baylis-Hillman reaction: easy preparation of versatile substrates, facile reactions, and synthetic applicationsJung Eun Yeo, Xiuling Yang, Hee Jin Kim, et al.Chemical Research in Toxicology|October 24, 2012
The efficiencies of damage recognition and excision correlate with duplex destabilization induced by acetylaminofluorene adducts in human nucleotide excision repairJung-Eun Yeo, Andy Khoo, Adebanke F Fagbemi, et al.Human Molecular Genetics|February 22, 2014
CtIP mediates replication fork recovery in a FANCD2-regulated mannerJung Eun Yeo, Eu Han Lee, Eric A Hendrickson, et al.DNA Repair|September 4, 2018
Molecular basis for damage recognition and verification by XPC-RAD23B and TFIIH in nucleotide excision repairHong Mu, Nicholas E Geacintov, Suse Broyde, et al.Nucleic Acids Research|August 3, 2019
Single-molecule visualization reveals the damage search mechanism for the human NER protein XPC-RAD23BNa Young Cheon, Hyun-Suk Kim, Jung-Eun Yeo, et al.The Journal of Organic Chemistry|December 5, 2008
Ring-expansion protocol: preparation of synthetically versatile dihydrotroponesYoung-Sun Do, Ruiying Sun, Hee Jin Kim, et al.Nucleic Acids Research|November 29, 2011
Lack of recognition by global-genome nucleotide excision repair accounts for the high mutagenicity and persistence of aristolactam-DNA adductsVictoria S Sidorenko, Jung-Eun Yeo, Radha R Bonala, et al.ACS Chemical Biology|June 12, 2014
Synthesis of site-specific DNA-protein conjugates and their effects on DNA replicationJung Eun Yeo, Susith Wickramaratne, Santoshkumar Khatwani, et al.Cell Death Discovery|November 24, 2025
Proteomic discovery of DEK and NUMA1 as new players in UV-induced DNA damage repair mechanismsNamwoo Kim, Mihyun Kim, Eunwoo Jeong, et al.Plos Genetics|October 3, 2015
FANCI Regulates Recruitment of the FA Core Complex at Sites of DNA Damage Independently of FANCD2Maria Castella, Celine Jacquemont, Elizabeth L Thompson, et al.Pageof 2