G3BP-driven RNP granules promote inhibitory RNA-RNA interactions resolved by DDX3X to regulate mRNA translatability.

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Title: G3BP-driven RNP granules promote inhibitory RNA-RNA interactions resolved by DDX3X to regulate mRNA translatability.
Authors: Trussina IREA; Biotechnology Center, Center for Molecular and Cellular Bioengineering, TU Dresden, Dresden 01307 Saxony, Germany., Hartmann A; B CUBE Center for Molecular Bioengineering, TU Dresden, Dresden 01307 Saxony, Germany., Desroches Altamirano C; Biotechnology Center, Center for Molecular and Cellular Bioengineering, TU Dresden, Dresden 01307 Saxony, Germany., Natarajan J; Biotechnology Center, Center for Molecular and Cellular Bioengineering, TU Dresden, Dresden 01307 Saxony, Germany., Fischer CM; Yusuf Hamied Department of Chemistry, Centre for Misfolding Diseases, University of Cambridge, Cambridge CB2 1EW, UK., Aleksejczuk M; Biotechnology Center, Center for Molecular and Cellular Bioengineering, TU Dresden, Dresden 01307 Saxony, Germany., Ausserwöger H; Yusuf Hamied Department of Chemistry, Centre for Misfolding Diseases, University of Cambridge, Cambridge CB2 1EW, UK., Knowles TPJ; Yusuf Hamied Department of Chemistry, Centre for Misfolding Diseases, University of Cambridge, Cambridge CB2 1EW, UK., Schlierf M; B CUBE Center for Molecular Bioengineering, TU Dresden, Dresden 01307 Saxony, Germany; Cluster of Excellence Physics of Life, TU Dresden, Dresden 01307 Saxony, Germany., Franzmann TM; Biotechnology Center, Center for Molecular and Cellular Bioengineering, TU Dresden, Dresden 01307 Saxony, Germany., Alberti S; Biotechnology Center, Center for Molecular and Cellular Bioengineering, TU Dresden, Dresden 01307 Saxony, Germany; Cluster of Excellence Physics of Life, TU Dresden, Dresden 01307 Saxony, Germany. Electronic address: simon.alberti@tu-dresden.de.
Source: Molecular cell [Mol Cell] 2025 Feb 06; Vol. 85 (3), pp. 585-601.e11. Date of Electronic Publication: 2024 Dec 26.
Publication Type: Journal Article
Journal Info: Publisher: Cell Press Country of Publication: United States NLM ID: 9802571 Publication Model: Print-Electronic Cited Medium: Internet ISSN: 1097-4164 (Electronic) Linking ISSN: 10972765 NLM ISO Abbreviation: Mol Cell Subsets: MEDLINE
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  Data: G3BP-driven RNP granules promote inhibitory RNA-RNA interactions resolved by DDX3X to regulate mRNA translatability.
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  Data: <searchLink fieldCode="AU" term="%22Trussina+IREA%22">Trussina IREA</searchLink>; Biotechnology Center, Center for Molecular and Cellular Bioengineering, TU Dresden, Dresden 01307 Saxony, Germany.<br /><searchLink fieldCode="AU" term="%22Hartmann+A%22">Hartmann A</searchLink>; B CUBE Center for Molecular Bioengineering, TU Dresden, Dresden 01307 Saxony, Germany.<br /><searchLink fieldCode="AU" term="%22Desroches+Altamirano+C%22">Desroches Altamirano C</searchLink>; Biotechnology Center, Center for Molecular and Cellular Bioengineering, TU Dresden, Dresden 01307 Saxony, Germany.<br /><searchLink fieldCode="AU" term="%22Natarajan+J%22">Natarajan J</searchLink>; Biotechnology Center, Center for Molecular and Cellular Bioengineering, TU Dresden, Dresden 01307 Saxony, Germany.<br /><searchLink fieldCode="AU" term="%22Fischer+CM%22">Fischer CM</searchLink>; Yusuf Hamied Department of Chemistry, Centre for Misfolding Diseases, University of Cambridge, Cambridge CB2 1EW, UK.<br /><searchLink fieldCode="AU" term="%22Aleksejczuk+M%22">Aleksejczuk M</searchLink>; Biotechnology Center, Center for Molecular and Cellular Bioengineering, TU Dresden, Dresden 01307 Saxony, Germany.<br /><searchLink fieldCode="AU" term="%22Ausserwöger+H%22">Ausserwöger H</searchLink>; Yusuf Hamied Department of Chemistry, Centre for Misfolding Diseases, University of Cambridge, Cambridge CB2 1EW, UK.<br /><searchLink fieldCode="AU" term="%22Knowles+TPJ%22">Knowles TPJ</searchLink>; Yusuf Hamied Department of Chemistry, Centre for Misfolding Diseases, University of Cambridge, Cambridge CB2 1EW, UK.<br /><searchLink fieldCode="AU" term="%22Schlierf+M%22">Schlierf M</searchLink>; B CUBE Center for Molecular Bioengineering, TU Dresden, Dresden 01307 Saxony, Germany; Cluster of Excellence Physics of Life, TU Dresden, Dresden 01307 Saxony, Germany.<br /><searchLink fieldCode="AU" term="%22Franzmann+TM%22">Franzmann TM</searchLink>; Biotechnology Center, Center for Molecular and Cellular Bioengineering, TU Dresden, Dresden 01307 Saxony, Germany.<br /><searchLink fieldCode="AU" term="%22Alberti+S%22">Alberti S</searchLink>; Biotechnology Center, Center for Molecular and Cellular Bioengineering, TU Dresden, Dresden 01307 Saxony, Germany; Cluster of Excellence Physics of Life, TU Dresden, Dresden 01307 Saxony, Germany. Electronic address: simon.alberti@tu-dresden.de.
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  Data: <searchLink fieldCode="JN" term="%229802571%22">Molecular cell</searchLink> [Mol Cell] 2025 Feb 06; Vol. 85 (3), pp. 585-601.e11. <i>Date of Electronic Publication: </i>2024 Dec 26.
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  Data: <i>Publisher: </i><searchLink fieldCode="PB" term="%22Cell+Press%22">Cell Press </searchLink><i>Country of Publication: </i>United States <i>NLM ID: </i>9802571 <i>Publication Model: </i>Print-Electronic <i>Cited Medium: </i>Internet <i>ISSN: </i>1097-4164 (Electronic) <i>Linking ISSN: </i><searchLink fieldCode="IS" term="%2210972765%22">10972765 </searchLink><i>NLM ISO Abbreviation: </i>Mol Cell <i>Subsets: </i>MEDLINE
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