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Requirement for a Uroplakin 3a-Like Protein in the Development of Zebrafish Pronephric Tubule Epithelial Cell Function, Morphogenesis, and Polarity

Uroplakin (UP)3a is critical for urinary tract development and function; however, its role in these processes is unknown. We examined the function of the UP3a-like protein Upk3l, which was expressed at the apical surfaces of the epithelial cells that line the pronephric tubules (PTs) of the zebrafis...

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Autores principales: Mitra, Shalini, Lukianov, Stefan, Ruiz, Wily G., Cianciolo Cosentino, Chiara, Sanker, Subramaniam, Traub, Linton M., Hukriede, Neil A., Apodaca, Gerard
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2012
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3404999/
https://www.ncbi.nlm.nih.gov/pubmed/22848617
http://dx.doi.org/10.1371/journal.pone.0041816
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author Mitra, Shalini
Lukianov, Stefan
Ruiz, Wily G.
Cianciolo Cosentino, Chiara
Sanker, Subramaniam
Traub, Linton M.
Hukriede, Neil A.
Apodaca, Gerard
author_facet Mitra, Shalini
Lukianov, Stefan
Ruiz, Wily G.
Cianciolo Cosentino, Chiara
Sanker, Subramaniam
Traub, Linton M.
Hukriede, Neil A.
Apodaca, Gerard
author_sort Mitra, Shalini
collection PubMed
description Uroplakin (UP)3a is critical for urinary tract development and function; however, its role in these processes is unknown. We examined the function of the UP3a-like protein Upk3l, which was expressed at the apical surfaces of the epithelial cells that line the pronephric tubules (PTs) of the zebrafish pronephros. Embryos treated with upk3l-targeted morpholinos showed decreased pronephros function, which was attributed to defects in PT epithelial cell morphogenesis and polarization including: loss of an apical brush border and associated phospho-ERM proteins, apical redistribution of the basolateral Na(+)/K(+)–ATPase, and altered or diminished expression of the apical polarity complex proteins Prkcz (atypical protein kinase C zeta) and Pard3 (Par3). Upk3l missing its C-terminal cytoplasmic domain or containing mutations in conserved tyrosine or proline residues did not rescue, or only partially rescued the effects of Upk3l depletion. Our studies indicate that Upk3l promotes epithelial polarization and morphogenesis, likely by forming or stimulating interactions with cytoplasmic signaling or polarity proteins, and that defects in this process may underlie the pathology observed in UP3a knockout mice or patients with renal abnormalities that result from altered UP3a expression.
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spelling pubmed-34049992012-07-30 Requirement for a Uroplakin 3a-Like Protein in the Development of Zebrafish Pronephric Tubule Epithelial Cell Function, Morphogenesis, and Polarity Mitra, Shalini Lukianov, Stefan Ruiz, Wily G. Cianciolo Cosentino, Chiara Sanker, Subramaniam Traub, Linton M. Hukriede, Neil A. Apodaca, Gerard PLoS One Research Article Uroplakin (UP)3a is critical for urinary tract development and function; however, its role in these processes is unknown. We examined the function of the UP3a-like protein Upk3l, which was expressed at the apical surfaces of the epithelial cells that line the pronephric tubules (PTs) of the zebrafish pronephros. Embryos treated with upk3l-targeted morpholinos showed decreased pronephros function, which was attributed to defects in PT epithelial cell morphogenesis and polarization including: loss of an apical brush border and associated phospho-ERM proteins, apical redistribution of the basolateral Na(+)/K(+)–ATPase, and altered or diminished expression of the apical polarity complex proteins Prkcz (atypical protein kinase C zeta) and Pard3 (Par3). Upk3l missing its C-terminal cytoplasmic domain or containing mutations in conserved tyrosine or proline residues did not rescue, or only partially rescued the effects of Upk3l depletion. Our studies indicate that Upk3l promotes epithelial polarization and morphogenesis, likely by forming or stimulating interactions with cytoplasmic signaling or polarity proteins, and that defects in this process may underlie the pathology observed in UP3a knockout mice or patients with renal abnormalities that result from altered UP3a expression. Public Library of Science 2012-07-25 /pmc/articles/PMC3404999/ /pubmed/22848617 http://dx.doi.org/10.1371/journal.pone.0041816 Text en © 2012 Mitra et al http://creativecommons.org/licenses/by/4.0/ This is an open-access article distributed under the terms of the Creative Commons Attribution License, which permits unrestricted use, distribution, and reproduction in any medium, provided the original author and source are properly credited.
spellingShingle Research Article
Mitra, Shalini
Lukianov, Stefan
Ruiz, Wily G.
Cianciolo Cosentino, Chiara
Sanker, Subramaniam
Traub, Linton M.
Hukriede, Neil A.
Apodaca, Gerard
Requirement for a Uroplakin 3a-Like Protein in the Development of Zebrafish Pronephric Tubule Epithelial Cell Function, Morphogenesis, and Polarity
title Requirement for a Uroplakin 3a-Like Protein in the Development of Zebrafish Pronephric Tubule Epithelial Cell Function, Morphogenesis, and Polarity
title_full Requirement for a Uroplakin 3a-Like Protein in the Development of Zebrafish Pronephric Tubule Epithelial Cell Function, Morphogenesis, and Polarity
title_fullStr Requirement for a Uroplakin 3a-Like Protein in the Development of Zebrafish Pronephric Tubule Epithelial Cell Function, Morphogenesis, and Polarity
title_full_unstemmed Requirement for a Uroplakin 3a-Like Protein in the Development of Zebrafish Pronephric Tubule Epithelial Cell Function, Morphogenesis, and Polarity
title_short Requirement for a Uroplakin 3a-Like Protein in the Development of Zebrafish Pronephric Tubule Epithelial Cell Function, Morphogenesis, and Polarity
title_sort requirement for a uroplakin 3a-like protein in the development of zebrafish pronephric tubule epithelial cell function, morphogenesis, and polarity
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3404999/
https://www.ncbi.nlm.nih.gov/pubmed/22848617
http://dx.doi.org/10.1371/journal.pone.0041816
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