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Nature Communications|April 13, 2019
Dynamic anticipation by Cdk2/Cyclin A-bound p27 mediates signal integration in cell cycle regulationMaksym Tsytlonok, Hugo Sanabria, Yuefeng Wang, et al.Nucleic Acids Research|November 15, 2017
MobiDB 3.0: more annotations for intrinsic disorder, conformational diversity and interactions in proteinsDamiano Piovesan, Francesco Tabaro, Lisanna Paladin, et al.Nucleic Acids Research|November 1, 2013
pE-DB: a database of structural ensembles of intrinsically disordered and of unfolded proteinsMihaly Varadi, Simone Kosol, Pierre Lebrun, et al.Nucleic Acids Research|November 13, 2019
DisProt: intrinsic protein disorder annotation in 2020András Hatos, Borbála Hajdu-Soltész, Alexander M Monzon, et al.Oncogene|July 27, 2025
PPARγ acetylation governs mammary adenocarcinoma tumor growth via acetylated residues that determine DNA sequence-specific bindingLifeng Tian, Xuanmao Jiao, Chenguang Wang, et al.Oncogenesis|January 8, 2024
A cyclin D1 intrinsically disordered domain accesses modified histone motifs to govern gene transcriptionXuanmao Jiao, Gabriele Di Sante, Mathew C Casimiro, et al.Cancer Cell|April 20, 2013
Molecular mechanism of SSR128129E, an extracellularly acting, small-molecule, allosteric inhibitor of FGF receptor signalingCorentin Herbert, Ulrich Schieborr, Krishna Saxena, et al.Intrinsically Disordered Proteins|May 19, 2017
What's in a name? Why these proteins are intrinsically disordered: Why these proteins are intrinsically disorderedA Keith Dunker, M Madan Babu, Elisar Barbar, et al.Nature Methods|July 3, 2023
Minimum information guidelines for experiments structurally characterizing intrinsically disordered protein regionsBálint Mészáros, András Hatos, Nicolas Palopoli, et al.Nature Methods|March 10, 2026
Toward a unified framework for determining conformational ensembles of disordered proteinsHamidreza Ghafouri, Pavel Kadeřávek, Ana M Melo, et al.Pageof 21