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ACS Synthetic Biology|June 29, 2022
Switchable Control of Scaffold Protein Activity via Engineered Phosphoregulated AutoinhibitionArjan Hazegh Nikroo, Lenne J M Lemmens, Tim Wezeman, et al.The FEBS Journal|March 14, 2022
Understanding the interaction of 14-3-3 proteins with hDMX and hDM2: a structural and biophysical studySonja Srdanović, Madita Wolter, Chi H Trinh, et al.Chemical Science|September 3, 2020
Modular bioengineered kinase sensors via scaffold protein-mediated split-luciferase complementationXiaolu Xu, Lenne J M Lemmens, Anniek den Hamer, et al.Digital Discovery|August 21, 2025
Identifying 14-3-3 interactome binding sites with deep learningLaura van Weesep, Rıza Özçelik, Marloes Pennings, et al.ACS Omega|March 24, 2020
Interaction of an IκBα Peptide with 14-3-3Madita Wolter, Domenico Lentini Santo, Petr Herman, et al.Chembiochem : a European Journal of Chemical Biology|October 30, 2023
Discovery of 14-3-3 PPI Stabilizers by Extension of an Amidine-Substituted Thiophene FragmentQi Wu, Federica Centorrino, Xavier Guillory, et al.Journal of the American Chemical Society|August 24, 2021
Supramolecular Enhancement of a Natural 14-3-3 Protein LigandXavier Guillory, Inesa Hadrović, Pim J de Vink, et al.Proceedings of the National Academy of Sciences of the United States of America|October 7, 2009
Structural basis for Ca2+-independence and activation by homodimerization of tomato subtilase 3Christian Ottmann, Rolf Rose, Franziska Huttenlocher, et al.Biochemistry|July 7, 2017
Identification of Two Secondary Ligand Binding Sites in 14-3-3 Proteins Using Fragment ScreeningEline Sijbesma, Lukasz Skora, Seppe Leysen, et al.Chembiochem : a European Journal of Chemical Biology|September 7, 2016
Constraining an Irregular Peptide Secondary Structure through Ring-Closing Alkyne MetathesisPhilipp M Cromm, Kerstin Wallraven, Adrian Glas, et al.Pageof 20