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Differential role of planar cell polarity gene Vangl2 in embryonic and adult mammalian kidneys

Planar cell polarity (PCP) pathway is crucial for tissue morphogenesis. Mutations in PCP genes cause multi-organ anomalies including dysplastic kidneys. Defective PCP signaling was postulated to contribute to cystogenesis in polycystic kidney disease. This work was undertaken to elucidate the role o...

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Autores principales: Derish, Ida, Lee, Jeremy K. H., Wong-King-Cheong, Melanie, Babayeva, Sima, Caplan, Jillian, Leung, Vicki, Shahinian, Chloe, Gravel, Michel, Deans, Michael R., Gros, Philippe, Torban, Elena
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2020
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7089571/
https://www.ncbi.nlm.nih.gov/pubmed/32203543
http://dx.doi.org/10.1371/journal.pone.0230586
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author Derish, Ida
Lee, Jeremy K. H.
Wong-King-Cheong, Melanie
Babayeva, Sima
Caplan, Jillian
Leung, Vicki
Shahinian, Chloe
Gravel, Michel
Deans, Michael R.
Gros, Philippe
Torban, Elena
author_facet Derish, Ida
Lee, Jeremy K. H.
Wong-King-Cheong, Melanie
Babayeva, Sima
Caplan, Jillian
Leung, Vicki
Shahinian, Chloe
Gravel, Michel
Deans, Michael R.
Gros, Philippe
Torban, Elena
author_sort Derish, Ida
collection PubMed
description Planar cell polarity (PCP) pathway is crucial for tissue morphogenesis. Mutations in PCP genes cause multi-organ anomalies including dysplastic kidneys. Defective PCP signaling was postulated to contribute to cystogenesis in polycystic kidney disease. This work was undertaken to elucidate the role of the key PCP gene, Vangl2, in embryonic and postnatal renal tubules and ascertain whether its loss contributes to cyst formation and defective tubular function in mature animals. We generated mice with ubiquitous and collecting duct-restricted excision of Vangl2. We analyzed renal tubules in mutant and control mice at embryonic day E17.5 and postnatal days P1, P7, P30, P90, 6- and 9-month old animals. The collecting duct functions were analyzed in young and adult mutant and control mice. Loss of Vangl2 leads to profound tubular dilatation and microcysts in embryonic kidneys. Mechanistically, these abnormalities are caused by defective convergent extension (larger tubular cross-sectional area) and apical constriction (cuboidal cell shape and a reduction of activated actomyosin at the luminal surface). However, the embryonic tubule defects were rapidly resolved by Vangl2-independent mechanisms after birth. Normal collecting duct architecture and functions were found in young and mature animals. During embryogenesis, Vangl2 controls tubular size via convergent extension and apical constriction. However, rapidly after birth, PCP-dependent control of tubular size is switched to a PCP-independent regulatory mechanism. We conclude that loss of the Vangl2 gene is dispensable for tubular elongation and maintenance postnatally. It does not lead to cyst formation and is unlikely to contribute to polycystic kidney disease.
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spelling pubmed-70895712020-04-01 Differential role of planar cell polarity gene Vangl2 in embryonic and adult mammalian kidneys Derish, Ida Lee, Jeremy K. H. Wong-King-Cheong, Melanie Babayeva, Sima Caplan, Jillian Leung, Vicki Shahinian, Chloe Gravel, Michel Deans, Michael R. Gros, Philippe Torban, Elena PLoS One Research Article Planar cell polarity (PCP) pathway is crucial for tissue morphogenesis. Mutations in PCP genes cause multi-organ anomalies including dysplastic kidneys. Defective PCP signaling was postulated to contribute to cystogenesis in polycystic kidney disease. This work was undertaken to elucidate the role of the key PCP gene, Vangl2, in embryonic and postnatal renal tubules and ascertain whether its loss contributes to cyst formation and defective tubular function in mature animals. We generated mice with ubiquitous and collecting duct-restricted excision of Vangl2. We analyzed renal tubules in mutant and control mice at embryonic day E17.5 and postnatal days P1, P7, P30, P90, 6- and 9-month old animals. The collecting duct functions were analyzed in young and adult mutant and control mice. Loss of Vangl2 leads to profound tubular dilatation and microcysts in embryonic kidneys. Mechanistically, these abnormalities are caused by defective convergent extension (larger tubular cross-sectional area) and apical constriction (cuboidal cell shape and a reduction of activated actomyosin at the luminal surface). However, the embryonic tubule defects were rapidly resolved by Vangl2-independent mechanisms after birth. Normal collecting duct architecture and functions were found in young and mature animals. During embryogenesis, Vangl2 controls tubular size via convergent extension and apical constriction. However, rapidly after birth, PCP-dependent control of tubular size is switched to a PCP-independent regulatory mechanism. We conclude that loss of the Vangl2 gene is dispensable for tubular elongation and maintenance postnatally. It does not lead to cyst formation and is unlikely to contribute to polycystic kidney disease. Public Library of Science 2020-03-23 /pmc/articles/PMC7089571/ /pubmed/32203543 http://dx.doi.org/10.1371/journal.pone.0230586 Text en © 2020 Derish 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 (http://creativecommons.org/licenses/by/4.0/) , which permits unrestricted use, distribution, and reproduction in any medium, provided the original author and source are credited.
spellingShingle Research Article
Derish, Ida
Lee, Jeremy K. H.
Wong-King-Cheong, Melanie
Babayeva, Sima
Caplan, Jillian
Leung, Vicki
Shahinian, Chloe
Gravel, Michel
Deans, Michael R.
Gros, Philippe
Torban, Elena
Differential role of planar cell polarity gene Vangl2 in embryonic and adult mammalian kidneys
title Differential role of planar cell polarity gene Vangl2 in embryonic and adult mammalian kidneys
title_full Differential role of planar cell polarity gene Vangl2 in embryonic and adult mammalian kidneys
title_fullStr Differential role of planar cell polarity gene Vangl2 in embryonic and adult mammalian kidneys
title_full_unstemmed Differential role of planar cell polarity gene Vangl2 in embryonic and adult mammalian kidneys
title_short Differential role of planar cell polarity gene Vangl2 in embryonic and adult mammalian kidneys
title_sort differential role of planar cell polarity gene vangl2 in embryonic and adult mammalian kidneys
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7089571/
https://www.ncbi.nlm.nih.gov/pubmed/32203543
http://dx.doi.org/10.1371/journal.pone.0230586
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