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Selective Degradation Permits a Feedback Loop Controlling Annexin A6 and Cholesterol Levels in Endolysosomes of NPC1 Mutant Cells

We recently identified elevated annexin A6 (AnxA6) protein levels in Niemann–Pick-type C1 (NPC1) mutant cells. In these cells, AnxA6 depletion rescued the cholesterol accumulation associated with NPC1 deficiency. Here, we demonstrate that elevated AnxA6 protein levels in NPC1 mutants or upon pharmac...

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Autores principales: Meneses-Salas, Elsa, García-Melero, Ana, Blanco-Muñoz, Patricia, Jose, Jaimy, Brenner, Marie-Sophie, Lu, Albert, Tebar, Francesc, Grewal, Thomas, Rentero, Carles, Enrich, Carlos
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2020
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7291204/
https://www.ncbi.nlm.nih.gov/pubmed/32392809
http://dx.doi.org/10.3390/cells9051152
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author Meneses-Salas, Elsa
García-Melero, Ana
Blanco-Muñoz, Patricia
Jose, Jaimy
Brenner, Marie-Sophie
Lu, Albert
Tebar, Francesc
Grewal, Thomas
Rentero, Carles
Enrich, Carlos
author_facet Meneses-Salas, Elsa
García-Melero, Ana
Blanco-Muñoz, Patricia
Jose, Jaimy
Brenner, Marie-Sophie
Lu, Albert
Tebar, Francesc
Grewal, Thomas
Rentero, Carles
Enrich, Carlos
author_sort Meneses-Salas, Elsa
collection PubMed
description We recently identified elevated annexin A6 (AnxA6) protein levels in Niemann–Pick-type C1 (NPC1) mutant cells. In these cells, AnxA6 depletion rescued the cholesterol accumulation associated with NPC1 deficiency. Here, we demonstrate that elevated AnxA6 protein levels in NPC1 mutants or upon pharmacological NPC1 inhibition, using U18666A, were not due to upregulated AnxA6 mRNA expression, but caused by defects in AnxA6 protein degradation. Two KFERQ-motifs are believed to target AnxA6 to lysosomes for chaperone-mediated autophagy (CMA), and we hypothesized that the cholesterol accumulation in endolysosomes (LE/Lys) triggered by the NPC1 inhibition could interfere with the CMA pathway. Therefore, AnxA6 protein amounts and cholesterol levels in the LE/Lys (LE-Chol) compartment were analyzed in NPC1 mutant cells ectopically expressing lysosome-associated membrane protein 2A (Lamp2A), which is well known to induce the CMA pathway. Strikingly, AnxA6 protein amounts were strongly decreased and coincided with significantly reduced LE-Chol levels in NPC1 mutant cells upon Lamp2A overexpression. Therefore, these findings suggest Lamp2A-mediated restoration of CMA in NPC1 mutant cells to lower LE-Chol levels with concomitant lysosomal AnxA6 degradation. Collectively, we propose CMA to permit a feedback loop between AnxA6 and cholesterol levels in LE/Lys, encompassing a novel mechanism for regulating cholesterol homeostasis in NPC1 disease.
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spelling pubmed-72912042020-06-17 Selective Degradation Permits a Feedback Loop Controlling Annexin A6 and Cholesterol Levels in Endolysosomes of NPC1 Mutant Cells Meneses-Salas, Elsa García-Melero, Ana Blanco-Muñoz, Patricia Jose, Jaimy Brenner, Marie-Sophie Lu, Albert Tebar, Francesc Grewal, Thomas Rentero, Carles Enrich, Carlos Cells Article We recently identified elevated annexin A6 (AnxA6) protein levels in Niemann–Pick-type C1 (NPC1) mutant cells. In these cells, AnxA6 depletion rescued the cholesterol accumulation associated with NPC1 deficiency. Here, we demonstrate that elevated AnxA6 protein levels in NPC1 mutants or upon pharmacological NPC1 inhibition, using U18666A, were not due to upregulated AnxA6 mRNA expression, but caused by defects in AnxA6 protein degradation. Two KFERQ-motifs are believed to target AnxA6 to lysosomes for chaperone-mediated autophagy (CMA), and we hypothesized that the cholesterol accumulation in endolysosomes (LE/Lys) triggered by the NPC1 inhibition could interfere with the CMA pathway. Therefore, AnxA6 protein amounts and cholesterol levels in the LE/Lys (LE-Chol) compartment were analyzed in NPC1 mutant cells ectopically expressing lysosome-associated membrane protein 2A (Lamp2A), which is well known to induce the CMA pathway. Strikingly, AnxA6 protein amounts were strongly decreased and coincided with significantly reduced LE-Chol levels in NPC1 mutant cells upon Lamp2A overexpression. Therefore, these findings suggest Lamp2A-mediated restoration of CMA in NPC1 mutant cells to lower LE-Chol levels with concomitant lysosomal AnxA6 degradation. Collectively, we propose CMA to permit a feedback loop between AnxA6 and cholesterol levels in LE/Lys, encompassing a novel mechanism for regulating cholesterol homeostasis in NPC1 disease. MDPI 2020-05-07 /pmc/articles/PMC7291204/ /pubmed/32392809 http://dx.doi.org/10.3390/cells9051152 Text en © 2020 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
Meneses-Salas, Elsa
García-Melero, Ana
Blanco-Muñoz, Patricia
Jose, Jaimy
Brenner, Marie-Sophie
Lu, Albert
Tebar, Francesc
Grewal, Thomas
Rentero, Carles
Enrich, Carlos
Selective Degradation Permits a Feedback Loop Controlling Annexin A6 and Cholesterol Levels in Endolysosomes of NPC1 Mutant Cells
title Selective Degradation Permits a Feedback Loop Controlling Annexin A6 and Cholesterol Levels in Endolysosomes of NPC1 Mutant Cells
title_full Selective Degradation Permits a Feedback Loop Controlling Annexin A6 and Cholesterol Levels in Endolysosomes of NPC1 Mutant Cells
title_fullStr Selective Degradation Permits a Feedback Loop Controlling Annexin A6 and Cholesterol Levels in Endolysosomes of NPC1 Mutant Cells
title_full_unstemmed Selective Degradation Permits a Feedback Loop Controlling Annexin A6 and Cholesterol Levels in Endolysosomes of NPC1 Mutant Cells
title_short Selective Degradation Permits a Feedback Loop Controlling Annexin A6 and Cholesterol Levels in Endolysosomes of NPC1 Mutant Cells
title_sort selective degradation permits a feedback loop controlling annexin a6 and cholesterol levels in endolysosomes of npc1 mutant cells
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7291204/
https://www.ncbi.nlm.nih.gov/pubmed/32392809
http://dx.doi.org/10.3390/cells9051152
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