KDEL receptor regulates secretion by lysosome relocation- and autophagy-dependent modulation of lipid-droplet turnover

Inter-organelle signaling coordinates adaptive responses via currently unknown mechanisms. Here, Tapia et al. show that KDEL signaling repositions lysosomes in a complex process termed ‘traffic-induced degradation response for secretion’ (TIDeRS) that connects multiple pathways and Golgi secretion....

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Autores principales: Diego Tapia, Tomás Jiménez, Constanza Zamora, Javier Espinoza, Riccardo Rizzo, Alexis González-Cárdenas, Danitza Fuentes, Sergio Hernández, Viviana A. Cavieres, Andrea Soza, Fanny Guzmán, Gloria Arriagada, María Isabel Yuseff, Gonzalo A. Mardones, Patricia V. Burgos, Alberto Luini, Alfonso González, Jorge Cancino
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Lenguaje:EN
Publicado: Nature Portfolio 2019
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Acceso en línea:https://doaj.org/article/a62da610b52144bab687c355e916d6aa
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spelling oai:doaj.org-article:a62da610b52144bab687c355e916d6aa2021-12-02T17:01:37ZKDEL receptor regulates secretion by lysosome relocation- and autophagy-dependent modulation of lipid-droplet turnover10.1038/s41467-019-08501-w2041-1723https://doaj.org/article/a62da610b52144bab687c355e916d6aa2019-02-01T00:00:00Zhttps://doi.org/10.1038/s41467-019-08501-whttps://doaj.org/toc/2041-1723Inter-organelle signaling coordinates adaptive responses via currently unknown mechanisms. Here, Tapia et al. show that KDEL signaling repositions lysosomes in a complex process termed ‘traffic-induced degradation response for secretion’ (TIDeRS) that connects multiple pathways and Golgi secretion.Diego TapiaTomás JiménezConstanza ZamoraJavier EspinozaRiccardo RizzoAlexis González-CárdenasDanitza FuentesSergio HernándezViviana A. CavieresAndrea SozaFanny GuzmánGloria ArriagadaMaría Isabel YuseffGonzalo A. MardonesPatricia V. BurgosAlberto LuiniAlfonso GonzálezJorge CancinoNature PortfolioarticleScienceQENNature Communications, Vol 10, Iss 1, Pp 1-17 (2019)
institution DOAJ
collection DOAJ
language EN
topic Science
Q
spellingShingle Science
Q
Diego Tapia
Tomás Jiménez
Constanza Zamora
Javier Espinoza
Riccardo Rizzo
Alexis González-Cárdenas
Danitza Fuentes
Sergio Hernández
Viviana A. Cavieres
Andrea Soza
Fanny Guzmán
Gloria Arriagada
María Isabel Yuseff
Gonzalo A. Mardones
Patricia V. Burgos
Alberto Luini
Alfonso González
Jorge Cancino
KDEL receptor regulates secretion by lysosome relocation- and autophagy-dependent modulation of lipid-droplet turnover
description Inter-organelle signaling coordinates adaptive responses via currently unknown mechanisms. Here, Tapia et al. show that KDEL signaling repositions lysosomes in a complex process termed ‘traffic-induced degradation response for secretion’ (TIDeRS) that connects multiple pathways and Golgi secretion.
format article
author Diego Tapia
Tomás Jiménez
Constanza Zamora
Javier Espinoza
Riccardo Rizzo
Alexis González-Cárdenas
Danitza Fuentes
Sergio Hernández
Viviana A. Cavieres
Andrea Soza
Fanny Guzmán
Gloria Arriagada
María Isabel Yuseff
Gonzalo A. Mardones
Patricia V. Burgos
Alberto Luini
Alfonso González
Jorge Cancino
author_facet Diego Tapia
Tomás Jiménez
Constanza Zamora
Javier Espinoza
Riccardo Rizzo
Alexis González-Cárdenas
Danitza Fuentes
Sergio Hernández
Viviana A. Cavieres
Andrea Soza
Fanny Guzmán
Gloria Arriagada
María Isabel Yuseff
Gonzalo A. Mardones
Patricia V. Burgos
Alberto Luini
Alfonso González
Jorge Cancino
author_sort Diego Tapia
title KDEL receptor regulates secretion by lysosome relocation- and autophagy-dependent modulation of lipid-droplet turnover
title_short KDEL receptor regulates secretion by lysosome relocation- and autophagy-dependent modulation of lipid-droplet turnover
title_full KDEL receptor regulates secretion by lysosome relocation- and autophagy-dependent modulation of lipid-droplet turnover
title_fullStr KDEL receptor regulates secretion by lysosome relocation- and autophagy-dependent modulation of lipid-droplet turnover
title_full_unstemmed KDEL receptor regulates secretion by lysosome relocation- and autophagy-dependent modulation of lipid-droplet turnover
title_sort kdel receptor regulates secretion by lysosome relocation- and autophagy-dependent modulation of lipid-droplet turnover
publisher Nature Portfolio
publishDate 2019
url https://doaj.org/article/a62da610b52144bab687c355e916d6aa
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