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GLI3 Repressor Controls Nephron Number via Regulation of Wnt11 and Ret in Ureteric Tip Cells

Truncating GLI3 mutations in Pallister-Hall Syndrome with renal malformation suggests a requirement for Hedgehog signaling during renal development. HH-dependent signaling increases levels of GLI transcriptional activators and decreases processing of GLI3 to a shorter transcriptional repressor. Prev...

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Autores principales: Cain, Jason E., Islam, Epshita, Haxho, Fiona, Chen, Lin, Bridgewater, Darren, Nieuwenhuis, Erica, Hui, Chi-Chung, Rosenblum, Norman D.
Formato: Texto
Lenguaje:English
Publicado: Public Library of Science 2009
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC2754339/
https://www.ncbi.nlm.nih.gov/pubmed/19809516
http://dx.doi.org/10.1371/journal.pone.0007313
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author Cain, Jason E.
Islam, Epshita
Haxho, Fiona
Chen, Lin
Bridgewater, Darren
Nieuwenhuis, Erica
Hui, Chi-Chung
Rosenblum, Norman D.
author_facet Cain, Jason E.
Islam, Epshita
Haxho, Fiona
Chen, Lin
Bridgewater, Darren
Nieuwenhuis, Erica
Hui, Chi-Chung
Rosenblum, Norman D.
author_sort Cain, Jason E.
collection PubMed
description Truncating GLI3 mutations in Pallister-Hall Syndrome with renal malformation suggests a requirement for Hedgehog signaling during renal development. HH-dependent signaling increases levels of GLI transcriptional activators and decreases processing of GLI3 to a shorter transcriptional repressor. Previously, we showed that Shh-deficiency interrupts early inductive events during renal development in a manner dependent on GLI3 repressor. Here we identify a novel function for GLI3 repressor in controlling nephron number. During renal morphogenesis, HH signaling activity, assayed by expression of Ptc1-lacZ, is localized to ureteric cells of the medulla, but is undetectable in the cortex. Targeted inactivation of Smo, the HH effector, in the ureteric cell lineage causes no detectable abnormality in renal morphogenesis. The functional significance of absent HH signaling activity in cortical ureteric cells was determined by targeted deletion of Ptc1, the SMO inhibitor, in the ureteric cell lineage. Ptc1(−/−UB) mice demonstrate ectopic Ptc1-lacZ expression in ureteric branch tips and renal hypoplasia characterized by reduced kidney size and a paucity of mature and intermediate nephrogenic structures. Ureteric tip cells are remarkable for abnormal morphology and impaired expression of Ret and Wnt11, markers of tip cell differentiation. A finding of renal hypoplasia in Gli3 (−/−) mice suggests a pathogenic role for reduced GLI3 repressor in the Ptc1(−/−UB) mice. Indeed, constitutive expression of GLI3 repressor via the Gli3(Δ699) allele in Ptc1(−/−UB) mice restores the normal pattern of HH signaling, and expression of Ret and Wnt11 and rescued the renal phenotype. Thus, GLI3 repressor controls nephron number by regulating ureteric tip cell expression of Wnt11 and Ret.
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spelling pubmed-27543392009-10-07 GLI3 Repressor Controls Nephron Number via Regulation of Wnt11 and Ret in Ureteric Tip Cells Cain, Jason E. Islam, Epshita Haxho, Fiona Chen, Lin Bridgewater, Darren Nieuwenhuis, Erica Hui, Chi-Chung Rosenblum, Norman D. PLoS One Research Article Truncating GLI3 mutations in Pallister-Hall Syndrome with renal malformation suggests a requirement for Hedgehog signaling during renal development. HH-dependent signaling increases levels of GLI transcriptional activators and decreases processing of GLI3 to a shorter transcriptional repressor. Previously, we showed that Shh-deficiency interrupts early inductive events during renal development in a manner dependent on GLI3 repressor. Here we identify a novel function for GLI3 repressor in controlling nephron number. During renal morphogenesis, HH signaling activity, assayed by expression of Ptc1-lacZ, is localized to ureteric cells of the medulla, but is undetectable in the cortex. Targeted inactivation of Smo, the HH effector, in the ureteric cell lineage causes no detectable abnormality in renal morphogenesis. The functional significance of absent HH signaling activity in cortical ureteric cells was determined by targeted deletion of Ptc1, the SMO inhibitor, in the ureteric cell lineage. Ptc1(−/−UB) mice demonstrate ectopic Ptc1-lacZ expression in ureteric branch tips and renal hypoplasia characterized by reduced kidney size and a paucity of mature and intermediate nephrogenic structures. Ureteric tip cells are remarkable for abnormal morphology and impaired expression of Ret and Wnt11, markers of tip cell differentiation. A finding of renal hypoplasia in Gli3 (−/−) mice suggests a pathogenic role for reduced GLI3 repressor in the Ptc1(−/−UB) mice. Indeed, constitutive expression of GLI3 repressor via the Gli3(Δ699) allele in Ptc1(−/−UB) mice restores the normal pattern of HH signaling, and expression of Ret and Wnt11 and rescued the renal phenotype. Thus, GLI3 repressor controls nephron number by regulating ureteric tip cell expression of Wnt11 and Ret. Public Library of Science 2009-10-07 /pmc/articles/PMC2754339/ /pubmed/19809516 http://dx.doi.org/10.1371/journal.pone.0007313 Text en Cain 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
Cain, Jason E.
Islam, Epshita
Haxho, Fiona
Chen, Lin
Bridgewater, Darren
Nieuwenhuis, Erica
Hui, Chi-Chung
Rosenblum, Norman D.
GLI3 Repressor Controls Nephron Number via Regulation of Wnt11 and Ret in Ureteric Tip Cells
title GLI3 Repressor Controls Nephron Number via Regulation of Wnt11 and Ret in Ureteric Tip Cells
title_full GLI3 Repressor Controls Nephron Number via Regulation of Wnt11 and Ret in Ureteric Tip Cells
title_fullStr GLI3 Repressor Controls Nephron Number via Regulation of Wnt11 and Ret in Ureteric Tip Cells
title_full_unstemmed GLI3 Repressor Controls Nephron Number via Regulation of Wnt11 and Ret in Ureteric Tip Cells
title_short GLI3 Repressor Controls Nephron Number via Regulation of Wnt11 and Ret in Ureteric Tip Cells
title_sort gli3 repressor controls nephron number via regulation of wnt11 and ret in ureteric tip cells
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC2754339/
https://www.ncbi.nlm.nih.gov/pubmed/19809516
http://dx.doi.org/10.1371/journal.pone.0007313
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