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  • IUPred2A: context-dependent... IUPred2A: context-dependent prediction of protein disorder as a function of redox state and protein binding
    Mészáros, Bálint; Erdos, Gábor; Dosztányi, Zsuzsanna Nucleic acids research, 07/2018, Volume: 46, Issue: W1
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    Abstract The structural states of proteins include ordered globular domains as well as intrinsically disordered protein regions that exist as highly flexible conformational ensembles in isolation. ...
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  • ANCHOR: web server for pred... ANCHOR: web server for predicting protein binding regions in disordered proteins
    Dosztányi, Zsuzsanna; Mészáros, Bálint; Simon, István Bioinformatics, 10/2009, Volume: 25, Issue: 20
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    ANCHOR is a web-based implementation of an original method that takes a single amino acid sequence as an input and predicts protein binding regions that are disordered in isolation but can undergo ...
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  • Prediction of protein bindi... Prediction of protein binding regions in disordered proteins
    Mészáros, Bálint; Simon, István; Dosztányi, Zsuzsanna PLoS computational biology, 05/2009, Volume: 5, Issue: 5
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    Many disordered proteins function via binding to a structured partner and undergo a disorder-to-order transition. The coupled folding and binding can confer several functional advantages such as the ...
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  • A structural biology community assessment of AlphaFold2 applications
    Akdel, Mehmet; Pires, Douglas E V; Pardo, Eduard Porta ... Nature structural & molecular biology, 11/2022, Volume: 29, Issue: 11
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    Most proteins fold into 3D structures that determine how they function and orchestrate the biological processes of the cell. Recent developments in computational methods for protein structure ...
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  • Computational resources for... Computational resources for identifying and describing proteins driving liquid-liquid phase separation
    Pancsa, Rita; Vranken, Wim; Mészáros, Bálint Briefings in bioinformatics, 09/2021, Volume: 22, Issue: 5
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    One of the most intriguing fields emerging in current molecular biology is the study of membraneless organelles formed via liquid-liquid phase separation (LLPS). These organelles perform crucial ...
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  • PhaSePro: the database of p... PhaSePro: the database of proteins driving liquid–liquid phase separation
    Mészáros, Bálint; Erdős, Gábor; Szabó, Beáta ... Nucleic acids research, 01/2020, Volume: 48, Issue: D1
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    Abstract Membraneless organelles (MOs) are dynamic liquid condensates that host a variety of specific cellular processes, such as ribosome biogenesis or RNA degradation. MOs form through ...
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  • MobiDB 3.0: more annotation... MobiDB 3.0: more annotations for intrinsic disorder, conformational diversity and interactions in proteins
    Piovesan, Damiano; Tabaro, Francesco; Paladin, Lisanna ... Nucleic acids research, 01/2018, Volume: 46, Issue: D1
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    Abstract The MobiDB (URL: mobidb.bio.unipd.it) database of protein disorder and mobility annotations has been significantly updated and upgraded since its last major renewal in 2014. Several curated ...
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  • The IntAct database: effici... The IntAct database: efficient access to fine-grained molecular interaction data
    del Toro, Noemi; Shrivastava, Anjali; Ragueneau, Eliot ... Nucleic acids research, 01/2022, Volume: 50, Issue: D1
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    Abstract The IntAct molecular interaction database (https://www.ebi.ac.uk/intact) is a curated resource of molecular interactions, derived from the scientific literature and from direct data ...
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  • MFIB: a repository of prote... MFIB: a repository of protein complexes with mutual folding induced by binding
    Fichó, Erzsébet; Reményi, István; Simon, István ... Bioinformatics (Oxford, England), 11/2017, Volume: 33, Issue: 22
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    It is commonplace that intrinsically disordered proteins (IDPs) are involved in crucial interactions in the living cell. However, the study of protein complexes formed exclusively by IDPs is hindered ...
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  • The Eukaryotic Linear Motif... The Eukaryotic Linear Motif resource: 2022 release
    Kumar, Manjeet; Michael, Sushama; Alvarado-Valverde, Jesús ... Nucleic acids research, 01/2022, Volume: 50, Issue: D1
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    Abstract Almost twenty years after its initial release, the Eukaryotic Linear Motif (ELM) resource remains an invaluable source of information for the study of motif-mediated protein-protein ...
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