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Transcriptional regulatory control of mammalian nephron progenitors revealed by multi-factor cistromic analysis and genetic studies

Nephron progenitor number determines nephron endowment; a reduced nephron count is linked to the onset of kidney disease. Several transcriptional regulators including Six2, Wt1, Osr1, Sall1, Eya1, Pax2, and Hox11 paralogues are required for specification and/or maintenance of nephron progenitors. Ho...

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Autores principales: O’Brien, Lori L., Guo, Qiuyu, Bahrami-Samani, Emad, Park, Joo-Seop, Hasso, Sean M., Lee, Young-Jin, Fang, Alan, Kim, Albert D., Guo, Jinjin, Hong, Trudy M., Peterson, Kevin A., Lozanoff, Scott, Raviram, Ramya, Ren, Bing, Fogelgren, Ben, Smith, Andrew D., Valouev, Anton, McMahon, Andrew P.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2018
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5805373/
https://www.ncbi.nlm.nih.gov/pubmed/29377931
http://dx.doi.org/10.1371/journal.pgen.1007181
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author O’Brien, Lori L.
Guo, Qiuyu
Bahrami-Samani, Emad
Park, Joo-Seop
Hasso, Sean M.
Lee, Young-Jin
Fang, Alan
Kim, Albert D.
Guo, Jinjin
Hong, Trudy M.
Peterson, Kevin A.
Lozanoff, Scott
Raviram, Ramya
Ren, Bing
Fogelgren, Ben
Smith, Andrew D.
Valouev, Anton
McMahon, Andrew P.
author_facet O’Brien, Lori L.
Guo, Qiuyu
Bahrami-Samani, Emad
Park, Joo-Seop
Hasso, Sean M.
Lee, Young-Jin
Fang, Alan
Kim, Albert D.
Guo, Jinjin
Hong, Trudy M.
Peterson, Kevin A.
Lozanoff, Scott
Raviram, Ramya
Ren, Bing
Fogelgren, Ben
Smith, Andrew D.
Valouev, Anton
McMahon, Andrew P.
author_sort O’Brien, Lori L.
collection PubMed
description Nephron progenitor number determines nephron endowment; a reduced nephron count is linked to the onset of kidney disease. Several transcriptional regulators including Six2, Wt1, Osr1, Sall1, Eya1, Pax2, and Hox11 paralogues are required for specification and/or maintenance of nephron progenitors. However, little is known about the regulatory intersection of these players. Here, we have mapped nephron progenitor-specific transcriptional networks of Six2, Hoxd11, Osr1, and Wt1. We identified 373 multi-factor associated ‘regulatory hotspots’ around genes closely associated with progenitor programs. To examine their functional significance, we deleted ‘hotspot’ enhancer elements for Six2 and Wnt4. Removal of the distal enhancer for Six2 leads to a ~40% reduction in Six2 expression. When combined with a Six2 null allele, progeny display a premature depletion of nephron progenitors. Loss of the Wnt4 enhancer led to a significant reduction of Wnt4 expression in renal vesicles and a mildly hypoplastic kidney, a phenotype also enhanced in combination with a Wnt4 null mutation. To explore the regulatory landscape that supports proper target gene expression, we performed CTCF ChIP-seq to identify insulator-boundary regions. One such putative boundary lies between the Six2 and Six3 loci. Evidence for the functional significance of this boundary was obtained by deep sequencing of the radiation-induced Brachyrrhine (Br) mutant allele. We identified an inversion of the Six2/Six3 locus around the CTCF-bound boundary, removing Six2 from its distal enhancer regulation, but placed next to Six3 enhancer elements which support ectopic Six2 expression in the lens where Six3 is normally expressed. Six3 is now predicted to fall under control of the Six2 distal enhancer. Consistent with this view, we observed ectopic Six3 in nephron progenitors. 4C-seq supports the model for Six2 distal enhancer interactions in wild-type and Br/+ mouse kidneys. Together, these data expand our view of the regulatory genome and regulatory landscape underpinning mammalian nephrogenesis.
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spelling pubmed-58053732018-02-23 Transcriptional regulatory control of mammalian nephron progenitors revealed by multi-factor cistromic analysis and genetic studies O’Brien, Lori L. Guo, Qiuyu Bahrami-Samani, Emad Park, Joo-Seop Hasso, Sean M. Lee, Young-Jin Fang, Alan Kim, Albert D. Guo, Jinjin Hong, Trudy M. Peterson, Kevin A. Lozanoff, Scott Raviram, Ramya Ren, Bing Fogelgren, Ben Smith, Andrew D. Valouev, Anton McMahon, Andrew P. PLoS Genet Research Article Nephron progenitor number determines nephron endowment; a reduced nephron count is linked to the onset of kidney disease. Several transcriptional regulators including Six2, Wt1, Osr1, Sall1, Eya1, Pax2, and Hox11 paralogues are required for specification and/or maintenance of nephron progenitors. However, little is known about the regulatory intersection of these players. Here, we have mapped nephron progenitor-specific transcriptional networks of Six2, Hoxd11, Osr1, and Wt1. We identified 373 multi-factor associated ‘regulatory hotspots’ around genes closely associated with progenitor programs. To examine their functional significance, we deleted ‘hotspot’ enhancer elements for Six2 and Wnt4. Removal of the distal enhancer for Six2 leads to a ~40% reduction in Six2 expression. When combined with a Six2 null allele, progeny display a premature depletion of nephron progenitors. Loss of the Wnt4 enhancer led to a significant reduction of Wnt4 expression in renal vesicles and a mildly hypoplastic kidney, a phenotype also enhanced in combination with a Wnt4 null mutation. To explore the regulatory landscape that supports proper target gene expression, we performed CTCF ChIP-seq to identify insulator-boundary regions. One such putative boundary lies between the Six2 and Six3 loci. Evidence for the functional significance of this boundary was obtained by deep sequencing of the radiation-induced Brachyrrhine (Br) mutant allele. We identified an inversion of the Six2/Six3 locus around the CTCF-bound boundary, removing Six2 from its distal enhancer regulation, but placed next to Six3 enhancer elements which support ectopic Six2 expression in the lens where Six3 is normally expressed. Six3 is now predicted to fall under control of the Six2 distal enhancer. Consistent with this view, we observed ectopic Six3 in nephron progenitors. 4C-seq supports the model for Six2 distal enhancer interactions in wild-type and Br/+ mouse kidneys. Together, these data expand our view of the regulatory genome and regulatory landscape underpinning mammalian nephrogenesis. Public Library of Science 2018-01-29 /pmc/articles/PMC5805373/ /pubmed/29377931 http://dx.doi.org/10.1371/journal.pgen.1007181 Text en © 2018 O’Brien 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
O’Brien, Lori L.
Guo, Qiuyu
Bahrami-Samani, Emad
Park, Joo-Seop
Hasso, Sean M.
Lee, Young-Jin
Fang, Alan
Kim, Albert D.
Guo, Jinjin
Hong, Trudy M.
Peterson, Kevin A.
Lozanoff, Scott
Raviram, Ramya
Ren, Bing
Fogelgren, Ben
Smith, Andrew D.
Valouev, Anton
McMahon, Andrew P.
Transcriptional regulatory control of mammalian nephron progenitors revealed by multi-factor cistromic analysis and genetic studies
title Transcriptional regulatory control of mammalian nephron progenitors revealed by multi-factor cistromic analysis and genetic studies
title_full Transcriptional regulatory control of mammalian nephron progenitors revealed by multi-factor cistromic analysis and genetic studies
title_fullStr Transcriptional regulatory control of mammalian nephron progenitors revealed by multi-factor cistromic analysis and genetic studies
title_full_unstemmed Transcriptional regulatory control of mammalian nephron progenitors revealed by multi-factor cistromic analysis and genetic studies
title_short Transcriptional regulatory control of mammalian nephron progenitors revealed by multi-factor cistromic analysis and genetic studies
title_sort transcriptional regulatory control of mammalian nephron progenitors revealed by multi-factor cistromic analysis and genetic studies
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5805373/
https://www.ncbi.nlm.nih.gov/pubmed/29377931
http://dx.doi.org/10.1371/journal.pgen.1007181
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