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logo citeas Ruiz-Solaní, N., Salguero-Linares, J., Armengot, L., Santos, J., Pallarès, I., van Midden, K. P., … Coll, N. S. (2023, July 1). Arabidopsismetacaspase MC1 localizes in stress granules, clears protein aggregates, and delays senescence. The Plant Cell. Oxford University Press (OUP). http://doi.org/10.1093/plcell/koad172
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Título

Arabidopsis metacaspase MC1 localizes in stress granules, clears protein aggregates, and delays senescence

AutorRuiz-Solani, Nerea CSIC ORCID; Salguero-Linares, José Manuel CSIC ORCID; Armengot, Laia CSIC ORCID; Santos, Jaime; Pallarès, Irantzu; Midden, Katarina P. van; Phukkan, Ujjal J.; Koyuncu, Seda; Borràs-Bisa, Júlia; Li, Liang CSIC ORCID; Popa, Crina CSIC ORCID; Eisele, Frederik; Eisele-Bürger, Anna Maria; Hill, S. M.; Gutiérrez-Beltrán, Emilio CSIC ORCID; Nyström, Thomas; Valls, Marc CSIC ORCID; Llamas, Ernesto CSIC ORCID; Vilchez, David; Klemenčič, Marina; Ventura, Salvador; Coll, Núria S. CSIC ORCID
FinanciadoresMinisterio de Ciencia, Innovación y Universidades (España)
Agencia Estatal de Investigación (España)
Ministerio de Economía y Competitividad (España)
European Commission
Generalitat de Catalunya
Ministerio de Universidades (España)
German Research Foundation
Else Kröner-Fresenius Foundation
European Cooperation in Science and Technology
CSIC - Unidad de Recursos de Información Científica para la Investigación (URICI)
Fecha de publicación1-sep-2023
EditorAmerican Society of Plant Biologists
Oxford University Press
CitaciónPlant Cell 35(9): 3325–3344 (2023)
ResumenStress granules (SGs) are highly conserved cytoplasmic condensates that assemble in response to stress and contribute to maintaining protein homeostasis. These membraneless organelles are dynamic, disassembling once the stress is no longer present. Persistence of SGs due to mutations or chronic stress has been often related to age-dependent protein-misfolding diseases in animals. Here, we find that the metacaspase MC1 is dynamically recruited into SGs upon proteotoxic stress in Arabidopsis (Arabidopsis thaliana). Two predicted disordered regions, the prodomain and the 360 loop, mediate MC1 recruitment to and release from SGs. Importantly, we show that MC1 has the capacity to clear toxic protein aggregates in vivo and in vitro, acting as a disaggregase. Finally, we demonstrate that overexpressing MC1 delays senescence and this phenotype is dependent on the presence of the 360 loop and an intact catalytic domain. Together, our data indicate that MC1 regulates senescence through its recruitment into SGs and this function could potentially be linked to its remarkable protein aggregate-clearing activity.
Versión del editorhttps://doi.org/10.1093/plcell/koad172
URIhttp://hdl.handle.net/10261/340736
DOI10.1093/plcell/koad172
ISSN1040-4651
E-ISSN1532-298X
Licencia de usohttp://creativecommons.org/licenses/by/4.0/
Trabajos fuenteRuiz-Solaní, Nerea; Salguero-Linares, José Manuel; Armengot, Laia; Santos, Jaime; Pallarès, Irantzu; Midden, Katarina P. van; Phukkan, Ujjal J.; Koyuncu, Seda; Borràs-Bisa, Júlia; Li, Liang; Popa, Crina; Eisele, Frederik; Eisele-Bürger, Anna Maria; Hill, S. M.; Gutierrez-Beltran, Emilio ; Nyström, Thomas; Valls, Marc; Llamas, Ernesto; Vilchez, David; Klemenčič, Marina; Ventura, Salvador; Coll, Núria S.; 2023; Supplementary Data of the article Arabidopsis metacaspase MC1 localizes in stress granules, clears protein aggregates, and delays senescence [Dataset]; American Society of Plant Biologists; Oxford University Press; https://doi.org/10.1093/plcell/koad172
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