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Vps34/PI3KC3 deletion in kidney proximal tubules impairs apical trafficking and blocks autophagic flux, causing a Fanconi-like syndrome and renal insufficiency

Kidney proximal tubular cells (PTCs) are highly specialized for ultrafiltrate reabsorption and serve as paradigm of apical epithelial differentiation. Vps34/PI3-kinase type III (PI3KC3) regulates endosomal dynamics, macroautophagy and lysosomal function. However, its in vivo role in PTCs has not bee...

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Autores principales: Grieco, Giuseppina, Janssens, Virginie, Gaide Chevronnay, Héloïse P., N’Kuli, Francisca, Van Der Smissen, Patrick, Wang, Tongsong, Shan, Jingdong, Vainio, Seppo, Bilanges, Benoit, Jouret, François, Vanhaesebroeck, Bart, Pierreux, Christophe E., Courtoy, Pierre J.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Nature Publishing Group UK 2018
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6148293/
https://www.ncbi.nlm.nih.gov/pubmed/30237523
http://dx.doi.org/10.1038/s41598-018-32389-z
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author Grieco, Giuseppina
Janssens, Virginie
Gaide Chevronnay, Héloïse P.
N’Kuli, Francisca
Van Der Smissen, Patrick
Wang, Tongsong
Shan, Jingdong
Vainio, Seppo
Bilanges, Benoit
Jouret, François
Vanhaesebroeck, Bart
Pierreux, Christophe E.
Courtoy, Pierre J.
author_facet Grieco, Giuseppina
Janssens, Virginie
Gaide Chevronnay, Héloïse P.
N’Kuli, Francisca
Van Der Smissen, Patrick
Wang, Tongsong
Shan, Jingdong
Vainio, Seppo
Bilanges, Benoit
Jouret, François
Vanhaesebroeck, Bart
Pierreux, Christophe E.
Courtoy, Pierre J.
author_sort Grieco, Giuseppina
collection PubMed
description Kidney proximal tubular cells (PTCs) are highly specialized for ultrafiltrate reabsorption and serve as paradigm of apical epithelial differentiation. Vps34/PI3-kinase type III (PI3KC3) regulates endosomal dynamics, macroautophagy and lysosomal function. However, its in vivo role in PTCs has not been evaluated. Conditional deletion of Vps34/PI3KC3 in PTCs by Pax8-Cre resulted in early (P7) PTC dysfunction, manifested by Fanconi-like syndrome, followed by kidney failure (P14) and death. By confocal microscopy, Vps34(∆/∆) PTCs showed preserved apico-basal specification (brush border, NHERF-1 versus Na(+)/K(+)-ATPase, ankyrin-G) but basal redistribution of late-endosomes/lysosomes (LAMP-1) and mis-localization to lysosomes of apical recycling endocytic receptors (megalin, cubilin) and apical non-recycling solute carriers (NaPi-IIa, SGLT-2). Defective endocytosis was confirmed by Texas-red-ovalbumin tracing and reduced albumin content. Disruption of Rab-11 and perinuclear galectin-3 compartments suggested mechanistic clues for defective receptor recycling and apical biosynthetic trafficking. p62-dependent autophagy was triggered yet abortive (p62 co-localization with LC3 but not LAMP-1) and PTCs became vacuolated. Impaired lysosomal positioning and blocked autophagy are known causes of cell stress. Thus, early trafficking defects show that Vps34 is a key in vivo component of molecular machineries governing apical vesicular trafficking, thus absorptive function in PTCs. Functional defects underline the essential role of Vps34 for PTC homeostasis and kidney survival.
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spelling pubmed-61482932019-02-12 Vps34/PI3KC3 deletion in kidney proximal tubules impairs apical trafficking and blocks autophagic flux, causing a Fanconi-like syndrome and renal insufficiency Grieco, Giuseppina Janssens, Virginie Gaide Chevronnay, Héloïse P. N’Kuli, Francisca Van Der Smissen, Patrick Wang, Tongsong Shan, Jingdong Vainio, Seppo Bilanges, Benoit Jouret, François Vanhaesebroeck, Bart Pierreux, Christophe E. Courtoy, Pierre J. Sci Rep Article Kidney proximal tubular cells (PTCs) are highly specialized for ultrafiltrate reabsorption and serve as paradigm of apical epithelial differentiation. Vps34/PI3-kinase type III (PI3KC3) regulates endosomal dynamics, macroautophagy and lysosomal function. However, its in vivo role in PTCs has not been evaluated. Conditional deletion of Vps34/PI3KC3 in PTCs by Pax8-Cre resulted in early (P7) PTC dysfunction, manifested by Fanconi-like syndrome, followed by kidney failure (P14) and death. By confocal microscopy, Vps34(∆/∆) PTCs showed preserved apico-basal specification (brush border, NHERF-1 versus Na(+)/K(+)-ATPase, ankyrin-G) but basal redistribution of late-endosomes/lysosomes (LAMP-1) and mis-localization to lysosomes of apical recycling endocytic receptors (megalin, cubilin) and apical non-recycling solute carriers (NaPi-IIa, SGLT-2). Defective endocytosis was confirmed by Texas-red-ovalbumin tracing and reduced albumin content. Disruption of Rab-11 and perinuclear galectin-3 compartments suggested mechanistic clues for defective receptor recycling and apical biosynthetic trafficking. p62-dependent autophagy was triggered yet abortive (p62 co-localization with LC3 but not LAMP-1) and PTCs became vacuolated. Impaired lysosomal positioning and blocked autophagy are known causes of cell stress. Thus, early trafficking defects show that Vps34 is a key in vivo component of molecular machineries governing apical vesicular trafficking, thus absorptive function in PTCs. Functional defects underline the essential role of Vps34 for PTC homeostasis and kidney survival. Nature Publishing Group UK 2018-09-20 /pmc/articles/PMC6148293/ /pubmed/30237523 http://dx.doi.org/10.1038/s41598-018-32389-z Text en © The Author(s) 2018 Open Access This article is licensed under a Creative Commons Attribution 4.0 International License, which permits use, sharing, adaptation, distribution and reproduction in any medium or format, as long as you give appropriate credit to the original author(s) and the source, provide a link to the Creative Commons license, and indicate if changes were made. The images or other third party material in this article are included in the article’s Creative Commons license, unless indicated otherwise in a credit line to the material. If material is not included in the article’s Creative Commons license and your intended use is not permitted by statutory regulation or exceeds the permitted use, you will need to obtain permission directly from the copyright holder. To view a copy of this license, visit http://creativecommons.org/licenses/by/4.0/.
spellingShingle Article
Grieco, Giuseppina
Janssens, Virginie
Gaide Chevronnay, Héloïse P.
N’Kuli, Francisca
Van Der Smissen, Patrick
Wang, Tongsong
Shan, Jingdong
Vainio, Seppo
Bilanges, Benoit
Jouret, François
Vanhaesebroeck, Bart
Pierreux, Christophe E.
Courtoy, Pierre J.
Vps34/PI3KC3 deletion in kidney proximal tubules impairs apical trafficking and blocks autophagic flux, causing a Fanconi-like syndrome and renal insufficiency
title Vps34/PI3KC3 deletion in kidney proximal tubules impairs apical trafficking and blocks autophagic flux, causing a Fanconi-like syndrome and renal insufficiency
title_full Vps34/PI3KC3 deletion in kidney proximal tubules impairs apical trafficking and blocks autophagic flux, causing a Fanconi-like syndrome and renal insufficiency
title_fullStr Vps34/PI3KC3 deletion in kidney proximal tubules impairs apical trafficking and blocks autophagic flux, causing a Fanconi-like syndrome and renal insufficiency
title_full_unstemmed Vps34/PI3KC3 deletion in kidney proximal tubules impairs apical trafficking and blocks autophagic flux, causing a Fanconi-like syndrome and renal insufficiency
title_short Vps34/PI3KC3 deletion in kidney proximal tubules impairs apical trafficking and blocks autophagic flux, causing a Fanconi-like syndrome and renal insufficiency
title_sort vps34/pi3kc3 deletion in kidney proximal tubules impairs apical trafficking and blocks autophagic flux, causing a fanconi-like syndrome and renal insufficiency
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6148293/
https://www.ncbi.nlm.nih.gov/pubmed/30237523
http://dx.doi.org/10.1038/s41598-018-32389-z
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