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Nucleic Acids Research|March 19, 2025
Overlapping and distinct functions of SPT6, PNUTS, and PCF11 in regulating transcription terminationFabienne Bejjani, Emmanuel Ségéral, Kevin Mosca, et al.Chembiochem : a European Journal of Chemical Biology|December 5, 2018
Recognition of ASF1 by Using Hydrocarbon-Constrained PeptidesMay Bakail, Silvia Rodriguez-Marin, Zsófia Hegedüs, et al.Liver International : Official Journal of the International Association for the Study of the Liver|November 15, 2020
Pathophysiological mechanisms of liver injury in COVID-19Alexander D Nardo, Mathias Schneeweiss-Gleixner, May Bakail, et al.Chemical Communications (Cambridge, England)|June 22, 2023
Unexpected binding modes of inhibitors to the histone chaperone ASF1 revealed by a foldamer scanning approachMarie E Perrin, Bo Li, Johanne Mbianda, et al.Science Advances|March 20, 2021
Optimal anchoring of a foldamer inhibitor of ASF1 histone chaperone through backbone plasticityJohanne Mbianda, May Bakail, Christophe André, et al.Nucleic Acids Research|January 26, 2015
Structural insight into how the human helicase subunit MCM2 may act as a histone chaperone together with ASF1 at the replication forkNicolas Richet, Danni Liu, Pierre Legrand, et al.Cell Chemical Biology|September 24, 2019
Design on a Rational Basis of High-Affinity Peptides Inhibiting the Histone Chaperone ASF1May Bakail, Albane Gaubert, Jessica Andreani, et al.Pageof 1