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Epigenetics|August 3, 2019
Lysine methyltransferase SETD6 modifies histones on a glycine-lysine motifOlivier BindaCurrent Drug Targets|May 16, 2009
The return of the INGs, histone mark sensors and phospholipid signaling effectorsDennis J Bua, Olivier BindaBiochemistry|November 13, 2015
A Phosphotyrosine Switch Controls the Association of Histone Mark Readers with Methylated ProteinsBronwyn Kate Irving-Hooper, Olivier BindaBiochemistry|April 2, 2020
The Biochemistry of Survival Motor Neuron Protein Is Paving the Way to Novel Therapies for Spinal Muscle AtrophyPatrick Lomonte, Faouzi Baklouti, Olivier BindaMolecular and Cellular Biology|February 16, 2006
RBP1 family proteins exhibit SUMOylation-dependent transcriptional repression and induce cell growth inhibition reminiscent of senescenceOlivier Binda, Jean-Sébastien Roy, Philip E BrantonBio-Protocol|December 6, 2018
<i>Ex vivo</i> Culture and Lentiviral Transduction of Benign Prostatic Hyperplasia (BPH) SamplesUrszula Lucja McClurg, Stuart R McCracken, Lisa Butler, et al.Epigenetics|December 3, 2010
Trimethylation of histone H3 lysine 4 impairs methylation of histone H3 lysine 9: regulation of lysine methyltransferases by physical interaction with their substratesOlivier Binda, Gary LeRoy, Dennis J Bua, et al.Epigenetics|January 18, 2013
SETD6 monomethylates H2AZ on lysine 7 and is required for the maintenance of embryonic stem cell self-renewalOlivier Binda, Ana Sevilla, Gary LeRoy, et al.Pageof 3