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logo citeas Gutierrez‐Beltran, E., Elander, P. H., Dalman, K., Dayhoff, G. W., II, Moschou, P. N., Uversky, V. N., … Bozhkov, P. V. (2021, July 21). Tudor staphylococcal nuclease is a docking platform for stress granule components and is essential for SnRK1 activation in Arabidopsis. The EMBO Journal. Springer Science and Business Media LLC. http://doi.org/10.15252/embj.2020105043
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Título

Tudor staphylococcal nuclease is a docking platform for stress granule components and is essential for SnRK1 activation in Arabidopsis

AutorGutiérrez-Beltrán, Emilio CSIC ORCID ; Elander, Pernilla H.; Dalman, Kerstin; Dayhoff II, Guy W.; Moschou, Panagiotis N.; Crespo, José L. CSIC ORCID ; Bozhkov, Peter V.; Dalman, Kerstin; Uversky, Vladimir
FinanciadoresMinisterio de Economía y Competitividad (España)
Palabras claveHeat stress
Intrinsically disordered regions
SnRK1/SNF1/AMPK
Stress granules
Tudor staphylococcal nuclease
Fecha de publicación2021
EditorEMBO Press
CitaciónEMBO Journal, (2021)
ResumenTudor staphylococcal nuclease (TSN; also known as Tudor-SN, p100, or SND1) is a multifunctional, evolutionarily conserved regulator of gene expression, exhibiting cytoprotective activity in animals and plants and oncogenic activity in mammals. During stress, TSN stably associates with stress granules (SGs), in a poorly understood process. Here, we show that in the model plant Arabidopsis thaliana, TSN is an intrinsically disordered protein (IDP) acting as a scaffold for a large pool of other IDPs, enriched for conserved stress granule components as well as novel or plantspecific SG-localized proteins. While approximately 30% of TSN interactors are recruited to stress granules de novo upon stress perception, 70% form a protein–protein interaction network present before the onset of stress. Finally, we demonstrate that TSN and stress granule formation promote heat-induced activation of the evolutionarily conserved energy-sensing SNF1-related protein kinase 1 (SnRK1), the plant orthologue of mammalian AMP-activated protein kinase (AMPK). Our results establish TSN as a docking platform for stress granule proteins, with an important role in stress signalling
URIhttp://hdl.handle.net/10261/247446
DOI10.15252/embj.2020105043
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