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dDAVP Downregulates the AQP3-Mediated Glycerol Transport via V1aR in Human Colon HCT8 Cells

Vasopressin (AVP) plays a key function in controlling body water and salt balance through the activation of the vasopressin receptors V1aR and V2R. Abnormal secretion of AVP can cause the syndrome of inappropriate antidiuresis that leads to hyponatremia, which is an electrolyte disorder often observ...

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Autores principales: Centrone, Mariangela, D’Agostino, Mariagrazia, Ranieri, Marianna, Mola, Maria Grazia, Faviana, Pinuccia, Lippolis, Piero Vincenzo, Silvestris, Domenico Alessandro, Venneri, Maria, Di Mise, Annarita, Valenti, Giovanna, Tamma, Grazia
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Frontiers Media S.A. 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9304624/
https://www.ncbi.nlm.nih.gov/pubmed/35874817
http://dx.doi.org/10.3389/fcell.2022.919438
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author Centrone, Mariangela
D’Agostino, Mariagrazia
Ranieri, Marianna
Mola, Maria Grazia
Faviana, Pinuccia
Lippolis, Piero Vincenzo
Silvestris, Domenico Alessandro
Venneri, Maria
Di Mise, Annarita
Valenti, Giovanna
Tamma, Grazia
author_facet Centrone, Mariangela
D’Agostino, Mariagrazia
Ranieri, Marianna
Mola, Maria Grazia
Faviana, Pinuccia
Lippolis, Piero Vincenzo
Silvestris, Domenico Alessandro
Venneri, Maria
Di Mise, Annarita
Valenti, Giovanna
Tamma, Grazia
author_sort Centrone, Mariangela
collection PubMed
description Vasopressin (AVP) plays a key function in controlling body water and salt balance through the activation of the vasopressin receptors V1aR and V2R. Abnormal secretion of AVP can cause the syndrome of inappropriate antidiuresis that leads to hyponatremia, which is an electrolyte disorder often observed in the elderly hospitalized and oncologic patients. Beyond kidneys, the colonic epithelium modulates water and salt homeostasis. The water channel AQP3, expressed in villus epithelial cells is implicated in water absorption across human colonic surface cells. Here, the action of dDAVP, a stable vasopressin analog, was evaluated on the AQP3 expression and function using human colon HCT8 cells as an experimental model. Confocal and Western Blotting analysis revealed that HCT8 cells express both V1aR and V2R. Long-term (72 h) treatment with dDAVP reduced glycerol uptake and cell viability. These effects were prevented by SR49059, a synthetic antagonist of V1aR, but not by tolvaptan, a specific V2R antagonist. Of note, the SR49059 action was impaired by DFP00173, a selective inhibitor of AQP3. Interestingly, compared to the normal colonic mucosa, in the colon of patients with adenocarcinoma, the expression of V1aR was significantly decreased. These findings were confirmed by gene expression analysis with RNA-Seq data. Overall, data suggest that dDAVP, through the V1aR dependent pathway, reduces AQP3 mediated glycerol uptake, a process that is reversed in adenocarcinoma, suggesting that the AVP-dependent AQP3 pathway may represent a novel target in colon diseases associated with abnormal cell growth.
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spelling pubmed-93046242022-07-23 dDAVP Downregulates the AQP3-Mediated Glycerol Transport via V1aR in Human Colon HCT8 Cells Centrone, Mariangela D’Agostino, Mariagrazia Ranieri, Marianna Mola, Maria Grazia Faviana, Pinuccia Lippolis, Piero Vincenzo Silvestris, Domenico Alessandro Venneri, Maria Di Mise, Annarita Valenti, Giovanna Tamma, Grazia Front Cell Dev Biol Cell and Developmental Biology Vasopressin (AVP) plays a key function in controlling body water and salt balance through the activation of the vasopressin receptors V1aR and V2R. Abnormal secretion of AVP can cause the syndrome of inappropriate antidiuresis that leads to hyponatremia, which is an electrolyte disorder often observed in the elderly hospitalized and oncologic patients. Beyond kidneys, the colonic epithelium modulates water and salt homeostasis. The water channel AQP3, expressed in villus epithelial cells is implicated in water absorption across human colonic surface cells. Here, the action of dDAVP, a stable vasopressin analog, was evaluated on the AQP3 expression and function using human colon HCT8 cells as an experimental model. Confocal and Western Blotting analysis revealed that HCT8 cells express both V1aR and V2R. Long-term (72 h) treatment with dDAVP reduced glycerol uptake and cell viability. These effects were prevented by SR49059, a synthetic antagonist of V1aR, but not by tolvaptan, a specific V2R antagonist. Of note, the SR49059 action was impaired by DFP00173, a selective inhibitor of AQP3. Interestingly, compared to the normal colonic mucosa, in the colon of patients with adenocarcinoma, the expression of V1aR was significantly decreased. These findings were confirmed by gene expression analysis with RNA-Seq data. Overall, data suggest that dDAVP, through the V1aR dependent pathway, reduces AQP3 mediated glycerol uptake, a process that is reversed in adenocarcinoma, suggesting that the AVP-dependent AQP3 pathway may represent a novel target in colon diseases associated with abnormal cell growth. Frontiers Media S.A. 2022-07-08 /pmc/articles/PMC9304624/ /pubmed/35874817 http://dx.doi.org/10.3389/fcell.2022.919438 Text en Copyright © 2022 Centrone, D’Agostino, Ranieri, Mola, Faviana, Lippolis, Silvestris, Venneri, Di Mise, Valenti and Tamma. https://creativecommons.org/licenses/by/4.0/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) and the copyright owner(s) 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 Cell and Developmental Biology
Centrone, Mariangela
D’Agostino, Mariagrazia
Ranieri, Marianna
Mola, Maria Grazia
Faviana, Pinuccia
Lippolis, Piero Vincenzo
Silvestris, Domenico Alessandro
Venneri, Maria
Di Mise, Annarita
Valenti, Giovanna
Tamma, Grazia
dDAVP Downregulates the AQP3-Mediated Glycerol Transport via V1aR in Human Colon HCT8 Cells
title dDAVP Downregulates the AQP3-Mediated Glycerol Transport via V1aR in Human Colon HCT8 Cells
title_full dDAVP Downregulates the AQP3-Mediated Glycerol Transport via V1aR in Human Colon HCT8 Cells
title_fullStr dDAVP Downregulates the AQP3-Mediated Glycerol Transport via V1aR in Human Colon HCT8 Cells
title_full_unstemmed dDAVP Downregulates the AQP3-Mediated Glycerol Transport via V1aR in Human Colon HCT8 Cells
title_short dDAVP Downregulates the AQP3-Mediated Glycerol Transport via V1aR in Human Colon HCT8 Cells
title_sort ddavp downregulates the aqp3-mediated glycerol transport via v1ar in human colon hct8 cells
topic Cell and Developmental Biology
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9304624/
https://www.ncbi.nlm.nih.gov/pubmed/35874817
http://dx.doi.org/10.3389/fcell.2022.919438
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