PhaSePro: the database of proteins driving liquid–liquid phase separation

Author:

Mészáros Bálint1,Erdős Gábor1,Szabó Beáta2,Schád Éva2,Tantos Ágnes2ORCID,Abukhairan Rawan2,Horváth Tamás2,Murvai Nikoletta2,Kovács Orsolya P2,Kovács Márton2,Tosatto Silvio C E3ORCID,Tompa Péter24,Dosztányi Zsuzsanna1,Pancsa Rita2ORCID

Affiliation:

1. MTA-ELTE Momentum Bioinformatics Research Group, Department of Biochemistry, Eötvös Loránd University, Budapest H-1117, Hungary

2. Institute of Enzymology, Research Centre for Natural Sciences of the Hungarian Academy of Sciences, Budapest H-1117, Hungary

3. Department of Biomedical Sciences, University of Padova CNR Institute of Neuroscience, Padova, Italy

4. Structural Biology (CSB), Brussels, Belgium; Structural Biology Brussels (SBB), Vrije Universiteit Brussel (VUB), Brussels 1050, Belgium

Abstract

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 liquid–liquid phase separation (LLPS), a process that relies on multivalent weak interactions of the constituent proteins and other macromolecules. Since the first discoveries of certain proteins being able to drive LLPS, it emerged as a general mechanism for the effective organization of cellular space that is exploited in all kingdoms of life. While numerous experimental studies report novel cases, the computational identification of LLPS drivers is lagging behind, and many open questions remain about the sequence determinants, composition, regulation and biological relevance of the resulting condensates. Our limited ability to overcome these issues is largely due to the lack of a dedicated LLPS database. Therefore, here we introduce PhaSePro (https://phasepro.elte.hu), an openly accessible, comprehensive, manually curated database of experimentally validated LLPS driver proteins/protein regions. It not only provides a wealth of information on such systems, but improves the standardization of data by introducing novel LLPS-specific controlled vocabularies. PhaSePro can be accessed through an appealing, user-friendly interface and thus has definite potential to become the central resource in this dynamically developing field.

Funder

Hungarian National Research, Development, and Innovation Office

Hungarian Academy of Sciences

VUB

New National Excellence Programme

National Research Council of Science and Technology

European Union's Horizon 2020 research and innovation programme

Publisher

Oxford University Press (OUP)

Subject

Genetics

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