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Renal epithelial cells can release ATP by vesicular fusion
Renal epithelial cells have the ability to release nucleotides as paracrine factors. In the intercalated cells of the collecting duct, ATP is released by connexin30 (cx30), which is selectively expressed in this cell type. However, ATP is released by virtually all renal epithelia and the aim of the...
Autores principales: | , , , , |
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Formato: | Online Artículo Texto |
Lenguaje: | English |
Publicado: |
Frontiers Media S.A.
2013
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Materias: | |
Acceso en línea: | https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3776935/ https://www.ncbi.nlm.nih.gov/pubmed/24065923 http://dx.doi.org/10.3389/fphys.2013.00238 |
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author | Bjaelde, Randi G. Arnadottir, Sigrid S. Overgaard, Morten T. Leipziger, Jens Praetorius, Helle A. |
author_facet | Bjaelde, Randi G. Arnadottir, Sigrid S. Overgaard, Morten T. Leipziger, Jens Praetorius, Helle A. |
author_sort | Bjaelde, Randi G. |
collection | PubMed |
description | Renal epithelial cells have the ability to release nucleotides as paracrine factors. In the intercalated cells of the collecting duct, ATP is released by connexin30 (cx30), which is selectively expressed in this cell type. However, ATP is released by virtually all renal epithelia and the aim of the present study was to identify possible alternative nucleotide release pathways in a renal epithelial cell model. We used MDCK (type1) cells to screen for various potential ATP release pathways. In these cells, inhibition of the vesicular H(+)-ATPases (bafilomycin) reduced both the spontaneous and hypotonically (80%)-induced nucleotide release. Interference with vesicular fusion using N-ethylamide markedly reduced the spontaneous nucleotide release, as did interference with trafficking from the endoplasmic reticulum to the Golgi apparatus (brefeldin A1) and vesicular transport (nocodazole). These findings were substantiated using a siRNA directed against SNAP-23, which significantly reduced spontaneous ATP release. Inhibition of pannexin and connexins did not affect the spontaneous ATP release in this cell type, which consists of ~90% principal cells. TIRF-microscopy of either fluorescently-labeled ATP (MANT-ATP) or quinacrine-loaded vesicles, revealed that spontaneous release of single vesicles could be promoted by either hypoosmolality (50%) or ionomycin. This vesicular release decreased the overall cellular fluorescence by 5.8 and 7.6% respectively. In summary, this study supports the notion that spontaneous and induced ATP release can occur via exocytosis in renal epithelial cells. |
format | Online Article Text |
id | pubmed-3776935 |
institution | National Center for Biotechnology Information |
language | English |
publishDate | 2013 |
publisher | Frontiers Media S.A. |
record_format | MEDLINE/PubMed |
spelling | pubmed-37769352013-09-24 Renal epithelial cells can release ATP by vesicular fusion Bjaelde, Randi G. Arnadottir, Sigrid S. Overgaard, Morten T. Leipziger, Jens Praetorius, Helle A. Front Physiol Physiology Renal epithelial cells have the ability to release nucleotides as paracrine factors. In the intercalated cells of the collecting duct, ATP is released by connexin30 (cx30), which is selectively expressed in this cell type. However, ATP is released by virtually all renal epithelia and the aim of the present study was to identify possible alternative nucleotide release pathways in a renal epithelial cell model. We used MDCK (type1) cells to screen for various potential ATP release pathways. In these cells, inhibition of the vesicular H(+)-ATPases (bafilomycin) reduced both the spontaneous and hypotonically (80%)-induced nucleotide release. Interference with vesicular fusion using N-ethylamide markedly reduced the spontaneous nucleotide release, as did interference with trafficking from the endoplasmic reticulum to the Golgi apparatus (brefeldin A1) and vesicular transport (nocodazole). These findings were substantiated using a siRNA directed against SNAP-23, which significantly reduced spontaneous ATP release. Inhibition of pannexin and connexins did not affect the spontaneous ATP release in this cell type, which consists of ~90% principal cells. TIRF-microscopy of either fluorescently-labeled ATP (MANT-ATP) or quinacrine-loaded vesicles, revealed that spontaneous release of single vesicles could be promoted by either hypoosmolality (50%) or ionomycin. This vesicular release decreased the overall cellular fluorescence by 5.8 and 7.6% respectively. In summary, this study supports the notion that spontaneous and induced ATP release can occur via exocytosis in renal epithelial cells. Frontiers Media S.A. 2013-09-19 /pmc/articles/PMC3776935/ /pubmed/24065923 http://dx.doi.org/10.3389/fphys.2013.00238 Text en Copyright © 2013 Bjaelde, Arnadottir, Overgaard, Leipziger and Praetorius. http://creativecommons.org/licenses/by/3.0/ This is an open-access article distributed under the terms of the Creative Commons Attribution License (CC BY). The use, distribution or reproduction in other forums is permitted, provided the original author(s) or licensor are credited and that the original publication in this journal is cited, in accordance with accepted academic practice. No use, distribution or reproduction is permitted which does not comply with these terms. |
spellingShingle | Physiology Bjaelde, Randi G. Arnadottir, Sigrid S. Overgaard, Morten T. Leipziger, Jens Praetorius, Helle A. Renal epithelial cells can release ATP by vesicular fusion |
title | Renal epithelial cells can release ATP by vesicular fusion |
title_full | Renal epithelial cells can release ATP by vesicular fusion |
title_fullStr | Renal epithelial cells can release ATP by vesicular fusion |
title_full_unstemmed | Renal epithelial cells can release ATP by vesicular fusion |
title_short | Renal epithelial cells can release ATP by vesicular fusion |
title_sort | renal epithelial cells can release atp by vesicular fusion |
topic | Physiology |
url | https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3776935/ https://www.ncbi.nlm.nih.gov/pubmed/24065923 http://dx.doi.org/10.3389/fphys.2013.00238 |
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