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Life Science Alliance|August 24, 2023
p62 and NBR1 functions are dispensable for aggrephagy in mouse ESCs and ESC-derived neuronsRiccardo Trapannone, Julia Romanov, Sascha MartensBiochemical Society Transactions|February 11, 2016
O-GlcNAc transferase inhibitors: current tools and future challengesRiccardo Trapannone, Karim Rafie, Daan M F van AaltenThe Biochemical Journal|April 7, 2016
Nucleocytoplasmic human O-GlcNAc transferase is sufficient for O-GlcNAcylation of mitochondrial proteinsRiccardo Trapannone, Daniel Mariappa, Andrew T Ferenbach, et al.Bioconjugate Chemistry|May 4, 2018
Thio-Linked UDP-Peptide Conjugates as O-GlcNAc Transferase InhibitorsKarim Rafie, Andrii Gorelik, Riccardo Trapannone, et al.EMBO Reports|February 2, 2023
The paradox of the life sciences: How to address climate change in the lab: How to address climate change in the labNikola Winter, Raphaël Marchand, Christian Lehmann, et al.Molecular and Cellular Biology|March 14, 2012
Reactive oxygen species and epidermal growth factor are antagonistic cues controlling SHP-2 dimerizationAurelio Pio Nardozza, Melania D'Orazio, Riccardo Trapannone, et al.The EMBO Journal|January 19, 2018
p62 filaments capture and present ubiquitinated cargos for autophagyGabriele Zaffagnini, Adriana Savova, Alberto Danieli, et al.Autophagy|June 23, 2018
Phasing out the bad-How SQSTM1/p62 sequesters ubiquitinated proteins for degradation by autophagyGabriele Zaffagnini, Adriana Savova, Alberto Danieli, et al.Molecular Cell|March 12, 2019
FIP200 Claw Domain Binding to p62 Promotes Autophagosome Formation at Ubiquitin CondensatesEleonora Turco, Marie Witt, Christine Abert, et al.Autophagy|May 9, 2019
How RB1CC1/FIP200 claws its way to autophagic engulfment of SQSTM1/p62-ubiquitin condensatesEleonora Turco, Marie Witt, Christine Abert, et al.Pageof 1