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Biophysics (Nagoya-Shi, Japan)|August 6, 2016
Structural and mutation studies of two DNA demethylation related glycosylases: MBD4 and TDGHideharu HashimotoExperimental Cell Research|May 17, 2003
Monoclonal antibody against dnmt1 arrests the cell division of xenopus early-stage embryosHideharu Hashimoto, Isao Suetake, Shoji TajimaJournal of Molecular Biology|January 23, 2013
Selective excision of 5-carboxylcytosine by a thymine DNA glycosylase mutantHideharu Hashimoto, Xing Zhang, Xiaodong ChengNucleic Acids Research|June 29, 2012
Excision of thymine and 5-hydroxymethyluracil by the MBD4 DNA glycosylase domain: structural basis and implications for active DNA demethylationHideharu Hashimoto, Xing Zhang, Xiaodong ChengDNA Repair|May 18, 2013
Activity and crystal structure of human thymine DNA glycosylase mutant N140A with 5-carboxylcytosine DNA at low pHHideharu Hashimoto, Xing Zhang, Xiaodong ChengEpigenomics|February 23, 2011
Molecular coupling of DNA methylation and histone methylationHideharu Hashimoto, Paula M Vertino, Xiaodong ChengEpigenetics|December 17, 2008
UHRF1, a modular multi-domain protein, regulates replication-coupled crosstalk between DNA methylation and histone modificationsHideharu Hashimoto, John R Horton, Xing Zhang, et al.The Journal of Biological Chemistry|July 9, 2015
The Mechanisms of Generation, Recognition, and Erasure of DNA 5-Methylcytosine and Thymine OxidationsHideharu Hashimoto, Xing Zhang, Paula M Vertino, et al.Human Molecular Genetics|November 23, 2014
Human FMRP contains an integral tandem Agenet (Tudor) and KH motif in the amino terminal domainLeila K Myrick, Hideharu Hashimoto, Xiaodong Cheng, et al.Journal of Molecular Biology|September 22, 2014
The carboxy-terminal domain of ROS1 is essential for 5-methylcytosine DNA glycosylase activitySamuel Hong, Hideharu Hashimoto, Yoke Wah Kow, et al.Pageof 4