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Cells|January 16, 2020
Mutations That Confer Drug-Resistance, Oncogenicity and Intrinsic Activity on the ERK MAP Kinases-Current State of the ArtKarina Smorodinsky-Atias, Nadine Soudah, David EngelbergJournal of Molecular Biology|November 8, 2017
The Crystal Structure and Conformations of an Unbranched Mixed Tri-Ubiquitin Chain Containing K48 and K63 LinkagesPrasanth Padala, Nadine Soudah, Moshe Giladi, et al.Iscience|July 13, 2026
Erk inhibitors intercept Erk-mediated negative feedback while imposing cell-cycle arrest and activating p38Merav Darash-Yahana, Nadine Soudah, Alexey Baskin, et al.FASEB Journal : Official Publication of the Federation of American Societies for Experimental Biology|January 4, 2018
Trans-binding of UFM1 to UBA5 stimulates UBA5 homodimerization and ATP bindingBayan Mashahreh, Fouad Hassouna, Nadine Soudah, et al.The Journal of Biological Chemistry|April 13, 2025
All intrinsically active Erk1/2 mutants autophosphorylate threonine207/188, a plausible regulator of the TEY motif phosphorylationAlexey Baskin, Nadine Soudah, Nechama Gilad, et al.Scientific Reports|April 1, 2017
Novel insights into the interaction of UBA5 with UFM1 via a UFM1-interacting sequencePrasanth Padala, Walaa Oweis, Bayan Mashahreh, et al.The Journal of Biological Chemistry|July 20, 2023
A conserved arginine within the αC-helix of Erk1/2 is a latch of autoactivation and of oncogenic capabilitiesNadine Soudah, Alexey Baskin, Karin Smorodinsky-Atias, et al.Journal of Molecular Biology|November 10, 2018
An N-Terminal Extension to UBA5 Adenylation Domain Boosts UFM1 Activation: Isoform-Specific Differences in Ubiquitin-like Protein ActivationNadine Soudah, Prasanth Padala, Fouad Hassouna, et al.Oncogene|May 20, 2025
Erk1R84H is an oncoprotein that causes hepatocellular carcinoma in mice and imposes a rigorous negative feedback loopNadine Soudah, Alexey Baskin, Merav Darash-Yahana, et al.Pageof 1