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The p24 Complex Contributes to Specify Arf1 for COPI Coat Selection

Golgi trafficking depends on the small GTPase Arf1 which, upon activation, drives the assembly of different coats onto budding vesicles. Two related types of guanine nucleotide exchange factors (GEFs) activate Arf1 at different Golgi sites. In yeast, Gea1 in the cis-Golgi and Gea2 in the medial-Golg...

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Autores principales: Sabido-Bozo, Susana, Perez-Linero, Ana Maria, Manzano-Lopez, Javier, Rodriguez-Gallardo, Sofia, Aguilera-Romero, Auxiliadora, Cortes-Gomez, Alejandro, Lopez, Sergio, Wellinger, Ralf Erik, Muñiz, Manuel
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2021
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7794930/
https://www.ncbi.nlm.nih.gov/pubmed/33401608
http://dx.doi.org/10.3390/ijms22010423
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author Sabido-Bozo, Susana
Perez-Linero, Ana Maria
Manzano-Lopez, Javier
Rodriguez-Gallardo, Sofia
Aguilera-Romero, Auxiliadora
Cortes-Gomez, Alejandro
Lopez, Sergio
Wellinger, Ralf Erik
Muñiz, Manuel
author_facet Sabido-Bozo, Susana
Perez-Linero, Ana Maria
Manzano-Lopez, Javier
Rodriguez-Gallardo, Sofia
Aguilera-Romero, Auxiliadora
Cortes-Gomez, Alejandro
Lopez, Sergio
Wellinger, Ralf Erik
Muñiz, Manuel
author_sort Sabido-Bozo, Susana
collection PubMed
description Golgi trafficking depends on the small GTPase Arf1 which, upon activation, drives the assembly of different coats onto budding vesicles. Two related types of guanine nucleotide exchange factors (GEFs) activate Arf1 at different Golgi sites. In yeast, Gea1 in the cis-Golgi and Gea2 in the medial-Golgi activate Arf1 to form COPI­coated vesicles for retrograde cargo sorting, whereas Sec7 generates clathrin/adaptor­coated vesicles at the trans-Golgi network (TGN) for forward cargo transport. A central question is how the same activated Arf1 protein manages to assemble different coats depending on the donor Golgi compartment. A previous study has postulated that the interaction between Gea1 and COPI would channel Arf1 activation for COPI vesicle budding. Here, we found that the p24 complex, a major COPI vesicle cargo, promotes the binding of Gea1 with COPI by increasing the COPI association to the membrane independently of Arf1 activation. Furthermore, the p24 complex also facilitates the interaction of Arf1 with its COPI effector. Therefore, our study supports a mechanism by which the p24 complex contributes to program Arf1 activation by Gea1 for selective COPI coat assembly at the cis-Golgi compartment.
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spelling pubmed-77949302021-01-10 The p24 Complex Contributes to Specify Arf1 for COPI Coat Selection Sabido-Bozo, Susana Perez-Linero, Ana Maria Manzano-Lopez, Javier Rodriguez-Gallardo, Sofia Aguilera-Romero, Auxiliadora Cortes-Gomez, Alejandro Lopez, Sergio Wellinger, Ralf Erik Muñiz, Manuel Int J Mol Sci Article Golgi trafficking depends on the small GTPase Arf1 which, upon activation, drives the assembly of different coats onto budding vesicles. Two related types of guanine nucleotide exchange factors (GEFs) activate Arf1 at different Golgi sites. In yeast, Gea1 in the cis-Golgi and Gea2 in the medial-Golgi activate Arf1 to form COPI­coated vesicles for retrograde cargo sorting, whereas Sec7 generates clathrin/adaptor­coated vesicles at the trans-Golgi network (TGN) for forward cargo transport. A central question is how the same activated Arf1 protein manages to assemble different coats depending on the donor Golgi compartment. A previous study has postulated that the interaction between Gea1 and COPI would channel Arf1 activation for COPI vesicle budding. Here, we found that the p24 complex, a major COPI vesicle cargo, promotes the binding of Gea1 with COPI by increasing the COPI association to the membrane independently of Arf1 activation. Furthermore, the p24 complex also facilitates the interaction of Arf1 with its COPI effector. Therefore, our study supports a mechanism by which the p24 complex contributes to program Arf1 activation by Gea1 for selective COPI coat assembly at the cis-Golgi compartment. MDPI 2021-01-03 /pmc/articles/PMC7794930/ /pubmed/33401608 http://dx.doi.org/10.3390/ijms22010423 Text en © 2021 by the authors. Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (http://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Sabido-Bozo, Susana
Perez-Linero, Ana Maria
Manzano-Lopez, Javier
Rodriguez-Gallardo, Sofia
Aguilera-Romero, Auxiliadora
Cortes-Gomez, Alejandro
Lopez, Sergio
Wellinger, Ralf Erik
Muñiz, Manuel
The p24 Complex Contributes to Specify Arf1 for COPI Coat Selection
title The p24 Complex Contributes to Specify Arf1 for COPI Coat Selection
title_full The p24 Complex Contributes to Specify Arf1 for COPI Coat Selection
title_fullStr The p24 Complex Contributes to Specify Arf1 for COPI Coat Selection
title_full_unstemmed The p24 Complex Contributes to Specify Arf1 for COPI Coat Selection
title_short The p24 Complex Contributes to Specify Arf1 for COPI Coat Selection
title_sort p24 complex contributes to specify arf1 for copi coat selection
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7794930/
https://www.ncbi.nlm.nih.gov/pubmed/33401608
http://dx.doi.org/10.3390/ijms22010423
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