Dokument: Large dynamics of a phase separating arginine-glycine-rich domain revealed via nuclear and electron spins

Titel:Large dynamics of a phase separating arginine-glycine-rich domain revealed via nuclear and electron spins
URL für Lesezeichen:https://docserv.uni-duesseldorf.de/servlets/DocumentServlet?id=67729
URN (NBN):urn:nbn:de:hbz:061-20241127-114531-3
Kollektion:Publikationen
Sprache:Englisch
Dokumententyp:Wissenschaftliche Texte » Artikel, Aufsatz
Medientyp:Text
Autoren: Sicoli, Giuseppe [Autor]
Sieme, Daniel [Autor]
Overkamp, Kerstin [Autor]
Khalil, Mahdi [Autor]
Backer, Robin [Autor]
Griesinger, Christian [Autor]
Willbold, Dieter [Autor]
Rezaei-Ghaleh, Nasrollah [Autor]
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Dateien vom 27.11.2024 / geändert 27.11.2024
Beschreibung:Liquid-liquid phase separation is the key process underlying formation of membrane-less compartments in cells. A highly dynamic cellular body with rapid component exchange is Cajal body (CB), which supports the extensive compositional dynamics of the RNA splicing machinery, spliceosome. Here, we select an arginine-glycine (RG)-rich segment of coilin, the major component of CB, establish its RNA-induced phase separation, and through combined use of nuclear magnetic resonance (NMR) and electron paramagnetic resonance (EPR) probes, interrogate its dynamics within the crowded interior of formed droplets. Taking advantage of glycine-based singlet-states, we show that glycines retain a large level of sub-nanoseconds dynamics inside the coilin droplets. Furthermore, the continuous-wave (CW) and electron-electron dipolar (PELDOR) and electron-nucleus hyperfine coupling EPR data (HYSCORE) support the RNA-induced formation of dynamic coilin droplets with high coilin peptide concentrations. The combined NMR and EPR data reveal the high dynamics of the RG-rich coilin within droplets and suggest its potential role in the large dynamics of CBs.
Rechtliche Vermerke:Originalveröffentlichung:
Sicoli, G., Sieme, D., Overkamp, K., Khalil, M., Backer, R., Griesinger, C., Willbold, D., & Rezaie Ghaleh, N. (2024). Large dynamics of a phase separating arginine-glycine-rich domain revealed via nuclear and electron spins. Nature Communications, 15, Article 1610. https://doi.org/10.1038/s41467-024-45788-w
Lizenz:Creative Commons Lizenzvertrag
Dieses Werk ist lizenziert unter einer Creative Commons Namensnennung 4.0 International Lizenz
Fachbereich / Einrichtung:Mathematisch- Naturwissenschaftliche Fakultät
Dokument erstellt am:27.11.2024
Dateien geändert am:27.11.2024
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