Cargando…

Integrin Beta 1 Is Crucial for Urinary Concentrating Ability and Renal Medulla Architecture in Adult Mice

Integrins are heterodimers anchoring cells to the surrounding extracellular matrix (ECM), an active and complex process mediating a series of inside-out and outside-in stimuli regulating cellular turn-over, tissue growth and architecture. Itgb1 is the main subunit of the renal integrins and it is cr...

Descripción completa

Detalles Bibliográficos
Autores principales: Iervolino, Anna, De La Motte, Luigi R., Petrillo, Federica, Prosperi, Federica, Alvino, Francesca Maria, Schiano, Guglielmo, Perna, Alessandra F., Di Matteo, Danilo, De Felice, Mario, Capasso, Giovambattista, Trepiccione, Francesco
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Frontiers Media S.A. 2018
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6147158/
https://www.ncbi.nlm.nih.gov/pubmed/30271355
http://dx.doi.org/10.3389/fphys.2018.01273
_version_ 1783356519985709056
author Iervolino, Anna
De La Motte, Luigi R.
Petrillo, Federica
Prosperi, Federica
Alvino, Francesca Maria
Schiano, Guglielmo
Perna, Alessandra F.
Di Matteo, Danilo
De Felice, Mario
Capasso, Giovambattista
Trepiccione, Francesco
author_facet Iervolino, Anna
De La Motte, Luigi R.
Petrillo, Federica
Prosperi, Federica
Alvino, Francesca Maria
Schiano, Guglielmo
Perna, Alessandra F.
Di Matteo, Danilo
De Felice, Mario
Capasso, Giovambattista
Trepiccione, Francesco
author_sort Iervolino, Anna
collection PubMed
description Integrins are heterodimers anchoring cells to the surrounding extracellular matrix (ECM), an active and complex process mediating a series of inside-out and outside-in stimuli regulating cellular turn-over, tissue growth and architecture. Itgb1 is the main subunit of the renal integrins and it is critical for renal development. This study aims to investigate the role of Itgb1 in the adult renal epithelial cells by knocking down Itgb1 in PAX8 expressing cells. Itgb1-Pax8 cKO mice develop a progressively worsening proteinuria and renal abnormalities leading to severe renal failure and hypertension. This phenotype is also associated with severe dysfunction of distal nephron and polyuria. To further investigate whether distal nephron involvement was primarily related to Itgb1 suppression or secondary to renal failure, an Itgb1-AQP2 cKO mouse model was generated. These mice lack Itgb1 expression in AQP2 expressing cells. They do not show any developmental alteration, but 1 month old mice are resistant to dDAVP administration and finally, at 2 months of age, they develop overt polyuria. This phenotype is due to primary collecting duct (CD) cells anoikis. The entire architecture of the outer medulla is altered, with loss of the typical organization pattern of vascular and tubular bundles alternation. Indeed, even though not primarily affected by genetic ablation, the TAL is secondarily affected in this model. It is sufficient to suppress Itgb1 expression in the CD in order to stimulate proliferation and then disappearance of neighboring TAL cells. This study shows that cell to cell interaction through the ECM is critical for architecture and function maintenance of the outer medulla and that Itgb1 is crucial for this process.
format Online
Article
Text
id pubmed-6147158
institution National Center for Biotechnology Information
language English
publishDate 2018
publisher Frontiers Media S.A.
record_format MEDLINE/PubMed
spelling pubmed-61471582018-09-28 Integrin Beta 1 Is Crucial for Urinary Concentrating Ability and Renal Medulla Architecture in Adult Mice Iervolino, Anna De La Motte, Luigi R. Petrillo, Federica Prosperi, Federica Alvino, Francesca Maria Schiano, Guglielmo Perna, Alessandra F. Di Matteo, Danilo De Felice, Mario Capasso, Giovambattista Trepiccione, Francesco Front Physiol Physiology Integrins are heterodimers anchoring cells to the surrounding extracellular matrix (ECM), an active and complex process mediating a series of inside-out and outside-in stimuli regulating cellular turn-over, tissue growth and architecture. Itgb1 is the main subunit of the renal integrins and it is critical for renal development. This study aims to investigate the role of Itgb1 in the adult renal epithelial cells by knocking down Itgb1 in PAX8 expressing cells. Itgb1-Pax8 cKO mice develop a progressively worsening proteinuria and renal abnormalities leading to severe renal failure and hypertension. This phenotype is also associated with severe dysfunction of distal nephron and polyuria. To further investigate whether distal nephron involvement was primarily related to Itgb1 suppression or secondary to renal failure, an Itgb1-AQP2 cKO mouse model was generated. These mice lack Itgb1 expression in AQP2 expressing cells. They do not show any developmental alteration, but 1 month old mice are resistant to dDAVP administration and finally, at 2 months of age, they develop overt polyuria. This phenotype is due to primary collecting duct (CD) cells anoikis. The entire architecture of the outer medulla is altered, with loss of the typical organization pattern of vascular and tubular bundles alternation. Indeed, even though not primarily affected by genetic ablation, the TAL is secondarily affected in this model. It is sufficient to suppress Itgb1 expression in the CD in order to stimulate proliferation and then disappearance of neighboring TAL cells. This study shows that cell to cell interaction through the ECM is critical for architecture and function maintenance of the outer medulla and that Itgb1 is crucial for this process. Frontiers Media S.A. 2018-09-13 /pmc/articles/PMC6147158/ /pubmed/30271355 http://dx.doi.org/10.3389/fphys.2018.01273 Text en Copyright © 2018 Iervolino, De La Motte, Petrillo, Prosperi, Alvino, Schiano, Perna, Di Matteo, De Felice, Capasso and Trepiccione. http://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 Physiology
Iervolino, Anna
De La Motte, Luigi R.
Petrillo, Federica
Prosperi, Federica
Alvino, Francesca Maria
Schiano, Guglielmo
Perna, Alessandra F.
Di Matteo, Danilo
De Felice, Mario
Capasso, Giovambattista
Trepiccione, Francesco
Integrin Beta 1 Is Crucial for Urinary Concentrating Ability and Renal Medulla Architecture in Adult Mice
title Integrin Beta 1 Is Crucial for Urinary Concentrating Ability and Renal Medulla Architecture in Adult Mice
title_full Integrin Beta 1 Is Crucial for Urinary Concentrating Ability and Renal Medulla Architecture in Adult Mice
title_fullStr Integrin Beta 1 Is Crucial for Urinary Concentrating Ability and Renal Medulla Architecture in Adult Mice
title_full_unstemmed Integrin Beta 1 Is Crucial for Urinary Concentrating Ability and Renal Medulla Architecture in Adult Mice
title_short Integrin Beta 1 Is Crucial for Urinary Concentrating Ability and Renal Medulla Architecture in Adult Mice
title_sort integrin beta 1 is crucial for urinary concentrating ability and renal medulla architecture in adult mice
topic Physiology
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6147158/
https://www.ncbi.nlm.nih.gov/pubmed/30271355
http://dx.doi.org/10.3389/fphys.2018.01273
work_keys_str_mv AT iervolinoanna integrinbeta1iscrucialforurinaryconcentratingabilityandrenalmedullaarchitectureinadultmice
AT delamotteluigir integrinbeta1iscrucialforurinaryconcentratingabilityandrenalmedullaarchitectureinadultmice
AT petrillofederica integrinbeta1iscrucialforurinaryconcentratingabilityandrenalmedullaarchitectureinadultmice
AT prosperifederica integrinbeta1iscrucialforurinaryconcentratingabilityandrenalmedullaarchitectureinadultmice
AT alvinofrancescamaria integrinbeta1iscrucialforurinaryconcentratingabilityandrenalmedullaarchitectureinadultmice
AT schianoguglielmo integrinbeta1iscrucialforurinaryconcentratingabilityandrenalmedullaarchitectureinadultmice
AT pernaalessandraf integrinbeta1iscrucialforurinaryconcentratingabilityandrenalmedullaarchitectureinadultmice
AT dimatteodanilo integrinbeta1iscrucialforurinaryconcentratingabilityandrenalmedullaarchitectureinadultmice
AT defelicemario integrinbeta1iscrucialforurinaryconcentratingabilityandrenalmedullaarchitectureinadultmice
AT capassogiovambattista integrinbeta1iscrucialforurinaryconcentratingabilityandrenalmedullaarchitectureinadultmice
AT trepiccionefrancesco integrinbeta1iscrucialforurinaryconcentratingabilityandrenalmedullaarchitectureinadultmice