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Artículo

Arginyltransferase 1 modulates p62-driven autophagy via mTORC1/AMPk signaling

Bonnet, Laura VanesaIcon ; Flores Martín, Jésica BelénIcon ; Palandri, AnabelaIcon ; Hallak, Marta ElenaIcon
Fecha de publicación: 01/2024
Editorial: BioMed Central
Revista: Cell Communication and Signaling
ISSN: 1478-811X
Idioma: Inglés
Tipo de recurso: Artículo publicado
Clasificación temática:
Bioquímica y Biología Molecular

Resumen

Background: Arginyltransferase (Ate1) orchestrates posttranslational protein arginylation, a pivotal regulator of cellular proteolytic processes. In eukaryotic cells, two interconnected systems the ubiquitin proteasome system (UPS) and macroautophagy mediate proteolysis and cooperate to maintain quality protein control and cellular homeostasis. Previous studies have shown that N-terminal arginylation facilitates protein degradation through the UPS. Dysregulation of this machinery triggers p62-mediated autophagy to ensure proper substrate processing. Nevertheless,how Ate1 operates through this intricate mechanism remains elusive.Methods: We investigated Ate1 subcellular distribution through confocal microscopy and biochemical assays using cells transiently or stably expressing either endogenous Ate1 or a GFP-tagged Ate1 isoform transfected in CHO-K1 or MEFs, respectively. To assess Ate1 and p62-cargo clustering, we analyzed their colocalization and multimerization status by immunofuorescence and nonreducing immunoblotting, respectively. Additionally, we employed Ate1 KO cells to examine the role of Ate1 in autophagy. Ate1 KO MEFs cells stably expressing GFP-tagged Ate1-1 isoform wereused as a model for phenotype rescue. Autophagy dynamics were evaluated by analyzing LC3B turnover and p62/SQSTM1 levels under both steady-state and serum-starvation conditions, through immunoblotting and immunofuorescence. We determined mTORC1/AMPk activation by assessing mTOR and AMPk phosphorylation through immunoblotting, while mTORC1 lysosomal localization was monitored by confocal microscopy.Results: Here, we report a multifaceted role for Ate1 in the autophagic process, wherein it clusters with p62, facilitates autophagic clearance, and modulates its signaling. Mechanistically, we found that cell-specifc inactivation of Ate1 elicits overactivation of the mTORC1/AMPk signaling hub that underlies a failure in autophagic fux and subsequent substrate accumulation, which is partially rescued by ectopic expression of Ate1. Statistical signifcance was assessed using a two-sided unpaired t test with a signifcance threshold set at P<0.05.Conclusions: Our fndings uncover a critical housekeeping role of Ate1 in mTORC1/AMPk-regulated autophagy, as a potential therapeutic target related to this pathway, that is dysregulated in many neurodegenerative and cancer diseases.
Palabras clave: ATE1 , P62 , AUTOPHAGY
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info:eu-repo/semantics/openAccess Excepto donde se diga explícitamente, este item se publica bajo la siguiente descripción: Creative Commons Attribution 2.5 Unported (CC BY 2.5)
Identificadores
URI: http://hdl.handle.net/11336/256501
DOI: http://dx.doi.org/10.1186/s12964-024-01499-9
Colecciones
Articulos(CIBICI)
Articulos de CENTRO DE INV.EN BIOQUI.CLINICA E INMUNOLOGIA
Articulos(CIQUIBIC)
Articulos de CENTRO DE INVEST.EN QCA.BIOL.DE CORDOBA (P)
Citación
Bonnet, Laura Vanesa; Flores Martín, Jésica Belén; Palandri, Anabela; Hallak, Marta Elena; Arginyltransferase 1 modulates p62-driven autophagy via mTORC1/AMPk signaling; BioMed Central; Cell Communication and Signaling; 22; 1; 1-2024; 1-17
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