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Ectopic GRHL2 Expression Due to Non-coding Mutations Promotes Cell State Transition and Causes Posterior Polymorphous Corneal Dystrophy 4

In a large family of Czech origin, we mapped a locus for an autosomal-dominant corneal endothelial dystrophy, posterior polymorphous corneal dystrophy 4 (PPCD4), to 8q22.3–q24.12. Whole-genome sequencing identified a unique variant (c.20+544G>T) in this locus, within an intronic regulatory region...

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Autores principales: Liskova, Petra, Dudakova, Lubica, Evans, Cerys J., Rojas Lopez, Karla E., Pontikos, Nikolas, Athanasiou, Dimitra, Jama, Hodan, Sach, Josef, Skalicka, Pavlina, Stranecky, Viktor, Kmoch, Stanislav, Thaung, Caroline, Filipec, Martin, Cheetham, Michael E., Davidson, Alice E., Tuft, Stephen J., Hardcastle, Alison J.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Elsevier 2018
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5985340/
https://www.ncbi.nlm.nih.gov/pubmed/29499165
http://dx.doi.org/10.1016/j.ajhg.2018.02.002
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author Liskova, Petra
Dudakova, Lubica
Evans, Cerys J.
Rojas Lopez, Karla E.
Pontikos, Nikolas
Athanasiou, Dimitra
Jama, Hodan
Sach, Josef
Skalicka, Pavlina
Stranecky, Viktor
Kmoch, Stanislav
Thaung, Caroline
Filipec, Martin
Cheetham, Michael E.
Davidson, Alice E.
Tuft, Stephen J.
Hardcastle, Alison J.
author_facet Liskova, Petra
Dudakova, Lubica
Evans, Cerys J.
Rojas Lopez, Karla E.
Pontikos, Nikolas
Athanasiou, Dimitra
Jama, Hodan
Sach, Josef
Skalicka, Pavlina
Stranecky, Viktor
Kmoch, Stanislav
Thaung, Caroline
Filipec, Martin
Cheetham, Michael E.
Davidson, Alice E.
Tuft, Stephen J.
Hardcastle, Alison J.
author_sort Liskova, Petra
collection PubMed
description In a large family of Czech origin, we mapped a locus for an autosomal-dominant corneal endothelial dystrophy, posterior polymorphous corneal dystrophy 4 (PPCD4), to 8q22.3–q24.12. Whole-genome sequencing identified a unique variant (c.20+544G>T) in this locus, within an intronic regulatory region of GRHL2. Targeted sequencing identified the same variant in three additional previously unsolved PPCD-affected families, including a de novo occurrence that suggests this is a recurrent mutation. Two further unique variants were identified in intron 1 of GRHL2 (c.20+257delT and c.20+133delA) in unrelated PPCD-affected families. GRHL2 is a transcription factor that suppresses epithelial-to-mesenchymal transition (EMT) and is a direct transcriptional repressor of ZEB1. ZEB1 mutations leading to haploinsufficiency cause PPCD3. We previously identified promoter mutations in OVOL2, a gene not normally expressed in the corneal endothelium, as the cause of PPCD1. OVOL2 drives mesenchymal-to-epithelial transition (MET) by directly inhibiting EMT-inducing transcription factors, such as ZEB1. Here, we demonstrate that the GRHL2 regulatory variants identified in PPCD4-affected individuals induce increased transcriptional activity in vitro. Furthermore, although GRHL2 is not expressed in corneal endothelial cells in control tissue, we detected GRHL2 in the corneal “endothelium” in PPCD4 tissue. These cells were also positive for epithelial markers E-Cadherin and Cytokeratin 7, indicating they have transitioned to an epithelial-like cell type. We suggest that mutations inducing MET within the corneal endothelium are a convergent pathogenic mechanism leading to dysfunction of the endothelial barrier and disease.
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spelling pubmed-59853402018-06-14 Ectopic GRHL2 Expression Due to Non-coding Mutations Promotes Cell State Transition and Causes Posterior Polymorphous Corneal Dystrophy 4 Liskova, Petra Dudakova, Lubica Evans, Cerys J. Rojas Lopez, Karla E. Pontikos, Nikolas Athanasiou, Dimitra Jama, Hodan Sach, Josef Skalicka, Pavlina Stranecky, Viktor Kmoch, Stanislav Thaung, Caroline Filipec, Martin Cheetham, Michael E. Davidson, Alice E. Tuft, Stephen J. Hardcastle, Alison J. Am J Hum Genet Article In a large family of Czech origin, we mapped a locus for an autosomal-dominant corneal endothelial dystrophy, posterior polymorphous corneal dystrophy 4 (PPCD4), to 8q22.3–q24.12. Whole-genome sequencing identified a unique variant (c.20+544G>T) in this locus, within an intronic regulatory region of GRHL2. Targeted sequencing identified the same variant in three additional previously unsolved PPCD-affected families, including a de novo occurrence that suggests this is a recurrent mutation. Two further unique variants were identified in intron 1 of GRHL2 (c.20+257delT and c.20+133delA) in unrelated PPCD-affected families. GRHL2 is a transcription factor that suppresses epithelial-to-mesenchymal transition (EMT) and is a direct transcriptional repressor of ZEB1. ZEB1 mutations leading to haploinsufficiency cause PPCD3. We previously identified promoter mutations in OVOL2, a gene not normally expressed in the corneal endothelium, as the cause of PPCD1. OVOL2 drives mesenchymal-to-epithelial transition (MET) by directly inhibiting EMT-inducing transcription factors, such as ZEB1. Here, we demonstrate that the GRHL2 regulatory variants identified in PPCD4-affected individuals induce increased transcriptional activity in vitro. Furthermore, although GRHL2 is not expressed in corneal endothelial cells in control tissue, we detected GRHL2 in the corneal “endothelium” in PPCD4 tissue. These cells were also positive for epithelial markers E-Cadherin and Cytokeratin 7, indicating they have transitioned to an epithelial-like cell type. We suggest that mutations inducing MET within the corneal endothelium are a convergent pathogenic mechanism leading to dysfunction of the endothelial barrier and disease. Elsevier 2018-03-01 2018-03-01 /pmc/articles/PMC5985340/ /pubmed/29499165 http://dx.doi.org/10.1016/j.ajhg.2018.02.002 Text en © 2018 The Author(s) http://creativecommons.org/licenses/by/4.0/ This is an open access article under the CC BY license (http://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Liskova, Petra
Dudakova, Lubica
Evans, Cerys J.
Rojas Lopez, Karla E.
Pontikos, Nikolas
Athanasiou, Dimitra
Jama, Hodan
Sach, Josef
Skalicka, Pavlina
Stranecky, Viktor
Kmoch, Stanislav
Thaung, Caroline
Filipec, Martin
Cheetham, Michael E.
Davidson, Alice E.
Tuft, Stephen J.
Hardcastle, Alison J.
Ectopic GRHL2 Expression Due to Non-coding Mutations Promotes Cell State Transition and Causes Posterior Polymorphous Corneal Dystrophy 4
title Ectopic GRHL2 Expression Due to Non-coding Mutations Promotes Cell State Transition and Causes Posterior Polymorphous Corneal Dystrophy 4
title_full Ectopic GRHL2 Expression Due to Non-coding Mutations Promotes Cell State Transition and Causes Posterior Polymorphous Corneal Dystrophy 4
title_fullStr Ectopic GRHL2 Expression Due to Non-coding Mutations Promotes Cell State Transition and Causes Posterior Polymorphous Corneal Dystrophy 4
title_full_unstemmed Ectopic GRHL2 Expression Due to Non-coding Mutations Promotes Cell State Transition and Causes Posterior Polymorphous Corneal Dystrophy 4
title_short Ectopic GRHL2 Expression Due to Non-coding Mutations Promotes Cell State Transition and Causes Posterior Polymorphous Corneal Dystrophy 4
title_sort ectopic grhl2 expression due to non-coding mutations promotes cell state transition and causes posterior polymorphous corneal dystrophy 4
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5985340/
https://www.ncbi.nlm.nih.gov/pubmed/29499165
http://dx.doi.org/10.1016/j.ajhg.2018.02.002
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