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Targeted resequencing identifies PTCH1 as a major contributor to ocular developmental anomalies and extends the SOX2 regulatory network

Ocular developmental anomalies (ODA) such as anophthalmia/microphthalmia (AM) or anterior segment dysgenesis (ASD) have an estimated combined prevalence of 3.7 in 10,000 births. Mutations in SOX2 are the most frequent contributors to severe ODA, yet account for a minority of the genetic drivers. To...

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Autores principales: Chassaing, Nicolas, Davis, Erica E., McKnight, Kelly L., Niederriter, Adrienne R., Causse, Alexandre, David, Véronique, Desmaison, Annaïck, Lamarre, Sophie, Vincent-Delorme, Catherine, Pasquier, Laurent, Coubes, Christine, Lacombe, Didier, Rossi, Massimiliano, Dufier, Jean-Louis, Dollfus, Helene, Kaplan, Josseline, Katsanis, Nicholas, Etchevers, Heather C., Faguer, Stanislas, Calvas, Patrick
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Cold Spring Harbor Laboratory Press 2016
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4817771/
https://www.ncbi.nlm.nih.gov/pubmed/26893459
http://dx.doi.org/10.1101/gr.196048.115
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author Chassaing, Nicolas
Davis, Erica E.
McKnight, Kelly L.
Niederriter, Adrienne R.
Causse, Alexandre
David, Véronique
Desmaison, Annaïck
Lamarre, Sophie
Vincent-Delorme, Catherine
Pasquier, Laurent
Coubes, Christine
Lacombe, Didier
Rossi, Massimiliano
Dufier, Jean-Louis
Dollfus, Helene
Kaplan, Josseline
Katsanis, Nicholas
Etchevers, Heather C.
Faguer, Stanislas
Calvas, Patrick
author_facet Chassaing, Nicolas
Davis, Erica E.
McKnight, Kelly L.
Niederriter, Adrienne R.
Causse, Alexandre
David, Véronique
Desmaison, Annaïck
Lamarre, Sophie
Vincent-Delorme, Catherine
Pasquier, Laurent
Coubes, Christine
Lacombe, Didier
Rossi, Massimiliano
Dufier, Jean-Louis
Dollfus, Helene
Kaplan, Josseline
Katsanis, Nicholas
Etchevers, Heather C.
Faguer, Stanislas
Calvas, Patrick
author_sort Chassaing, Nicolas
collection PubMed
description Ocular developmental anomalies (ODA) such as anophthalmia/microphthalmia (AM) or anterior segment dysgenesis (ASD) have an estimated combined prevalence of 3.7 in 10,000 births. Mutations in SOX2 are the most frequent contributors to severe ODA, yet account for a minority of the genetic drivers. To identify novel ODA loci, we conducted targeted high-throughput sequencing of 407 candidate genes in an initial cohort of 22 sporadic ODA patients. Patched 1 (PTCH1), an inhibitor of sonic hedgehog (SHH) signaling, harbored an enrichment of rare heterozygous variants in comparison to either controls, or to the other candidate genes (four missense and one frameshift); targeted resequencing of PTCH1 in a second cohort of 48 ODA patients identified two additional rare nonsynonymous changes. Using multiple transient models and a CRISPR/Cas9-generated mutant, we show physiologically relevant phenotypes altering SHH signaling and eye development upon abrogation of ptch1 in zebrafish for which in vivo complementation assays using these models showed that all six patient missense mutations affect SHH signaling. Finally, through transcriptomic and ChIP analyses, we show that SOX2 binds to an intronic domain of the PTCH1 locus to regulate PTCH1 expression, findings that were validated both in vitro and in vivo. Together, these results demonstrate that PTCH1 mutations contribute to as much as 10% of ODA, identify the SHH signaling pathway as a novel effector of SOX2 activity during human ocular development, and indicate that ODA is likely the result of overactive SHH signaling in humans harboring mutations in either PTCH1 or SOX2.
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spelling pubmed-48177712016-10-01 Targeted resequencing identifies PTCH1 as a major contributor to ocular developmental anomalies and extends the SOX2 regulatory network Chassaing, Nicolas Davis, Erica E. McKnight, Kelly L. Niederriter, Adrienne R. Causse, Alexandre David, Véronique Desmaison, Annaïck Lamarre, Sophie Vincent-Delorme, Catherine Pasquier, Laurent Coubes, Christine Lacombe, Didier Rossi, Massimiliano Dufier, Jean-Louis Dollfus, Helene Kaplan, Josseline Katsanis, Nicholas Etchevers, Heather C. Faguer, Stanislas Calvas, Patrick Genome Res Research Ocular developmental anomalies (ODA) such as anophthalmia/microphthalmia (AM) or anterior segment dysgenesis (ASD) have an estimated combined prevalence of 3.7 in 10,000 births. Mutations in SOX2 are the most frequent contributors to severe ODA, yet account for a minority of the genetic drivers. To identify novel ODA loci, we conducted targeted high-throughput sequencing of 407 candidate genes in an initial cohort of 22 sporadic ODA patients. Patched 1 (PTCH1), an inhibitor of sonic hedgehog (SHH) signaling, harbored an enrichment of rare heterozygous variants in comparison to either controls, or to the other candidate genes (four missense and one frameshift); targeted resequencing of PTCH1 in a second cohort of 48 ODA patients identified two additional rare nonsynonymous changes. Using multiple transient models and a CRISPR/Cas9-generated mutant, we show physiologically relevant phenotypes altering SHH signaling and eye development upon abrogation of ptch1 in zebrafish for which in vivo complementation assays using these models showed that all six patient missense mutations affect SHH signaling. Finally, through transcriptomic and ChIP analyses, we show that SOX2 binds to an intronic domain of the PTCH1 locus to regulate PTCH1 expression, findings that were validated both in vitro and in vivo. Together, these results demonstrate that PTCH1 mutations contribute to as much as 10% of ODA, identify the SHH signaling pathway as a novel effector of SOX2 activity during human ocular development, and indicate that ODA is likely the result of overactive SHH signaling in humans harboring mutations in either PTCH1 or SOX2. Cold Spring Harbor Laboratory Press 2016-04 /pmc/articles/PMC4817771/ /pubmed/26893459 http://dx.doi.org/10.1101/gr.196048.115 Text en © 2016 Chassaing et al.; Published by Cold Spring Harbor Laboratory Press http://creativecommons.org/licenses/by-nc/4.0/ This article is distributed exclusively by Cold Spring Harbor Laboratory Press for the first six months after the full-issue publication date (see http://genome.cshlp.org/site/misc/terms.xhtml). After six months, it is available under a Creative Commons License (Attribution-NonCommercial 4.0 International), as described at http://creativecommons.org/licenses/by-nc/4.0/.
spellingShingle Research
Chassaing, Nicolas
Davis, Erica E.
McKnight, Kelly L.
Niederriter, Adrienne R.
Causse, Alexandre
David, Véronique
Desmaison, Annaïck
Lamarre, Sophie
Vincent-Delorme, Catherine
Pasquier, Laurent
Coubes, Christine
Lacombe, Didier
Rossi, Massimiliano
Dufier, Jean-Louis
Dollfus, Helene
Kaplan, Josseline
Katsanis, Nicholas
Etchevers, Heather C.
Faguer, Stanislas
Calvas, Patrick
Targeted resequencing identifies PTCH1 as a major contributor to ocular developmental anomalies and extends the SOX2 regulatory network
title Targeted resequencing identifies PTCH1 as a major contributor to ocular developmental anomalies and extends the SOX2 regulatory network
title_full Targeted resequencing identifies PTCH1 as a major contributor to ocular developmental anomalies and extends the SOX2 regulatory network
title_fullStr Targeted resequencing identifies PTCH1 as a major contributor to ocular developmental anomalies and extends the SOX2 regulatory network
title_full_unstemmed Targeted resequencing identifies PTCH1 as a major contributor to ocular developmental anomalies and extends the SOX2 regulatory network
title_short Targeted resequencing identifies PTCH1 as a major contributor to ocular developmental anomalies and extends the SOX2 regulatory network
title_sort targeted resequencing identifies ptch1 as a major contributor to ocular developmental anomalies and extends the sox2 regulatory network
topic Research
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4817771/
https://www.ncbi.nlm.nih.gov/pubmed/26893459
http://dx.doi.org/10.1101/gr.196048.115
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