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The Journal of Biological Chemistry|August 23, 2014
Cooperative DNA binding and protein/DNA fiber formation increases the activity of the Dnmt3a DNA methyltransferaseMax Emperle, Arumugam Rajavelu, Richard Reinhardt, et al.Journal of Molecular Biology|August 10, 2021
Deep Enzymology Studies on DNA Methyltransferases Reveal Novel Connections between Flanking Sequences and Enzyme ActivityAlbert Jeltsch, Sabrina Adam, Michael Dukatz, et al.Journal of Molecular Biology|October 22, 2019
H3K36me2/3 Binding and DNA Binding of the DNA Methyltransferase DNMT3A PWWP Domain Both Contribute to its Chromatin InteractionMichael Dukatz, Katharina Holzer, Michel Choudalakis, et al.Methods and Protocols|December 30, 2020
Purification and Characterization of Recombinant Expressed Apple Allergen Mal d 1Julia A H Kaeswurm, Bettina Nestl, Sven M Richter, et al.Journal of Molecular Biology|June 24, 2019
Mechanistic Insights into Cytosine-N3 Methylation by DNA Methyltransferase DNMT3AMichael Dukatz, Cristina E Requena, Max Emperle, et al.Communications Biology|May 16, 2024
Specific DNMT3C flanking sequence preferences facilitate methylation of young murine retrotransposonsLeonie Dossmann, Max Emperle, Michael Dukatz, et al.Biochimie|December 17, 2022
The R736H cancer mutation in DNMT3A modulates the properties of the FF-subunit interfaceStefan Kunert, Max Emperle, Sabrina Adam, et al.Journal of Molecular Biology|February 8, 2022
Preferential Self-interaction of DNA Methyltransferase DNMT3A Subunits Containing the R882H Cancer Mutation Leads to Dominant Changes of Flanking Sequence PreferencesAlexandra Mack, Max Emperle, Philipp Schnee, et al.Scientific Reports|September 7, 2018
The DNMT3A R882H mutation does not cause dominant negative effects in purified mixed DNMT3A/R882H complexesMax Emperle, Michael Dukatz, Stefan Kunert, et al.Nucleic Acids Research|March 9, 2018
The DNMT3A R882H mutant displays altered flanking sequence preferencesMax Emperle, Arumugam Rajavelu, Stefan Kunert, et al.Pageof 2