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The LHX2-OTX2 transcriptional regulatory module controls retinal pigmented epithelium differentiation and underlies genetic risk for age-related macular degeneration

Tissue-specific transcription factors (TFs) control the transcriptome through an association with noncoding regulatory regions (cistromes). Identifying the combination of TFs that dictate specific cell fate, their specific cistromes and examining their involvement in complex human traits remain a ma...

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Autores principales: Cohen-Gulkar, Mazal, David, Ahuvit, Messika-Gold, Naama, Eshel, Mai, Ovadia, Shai, Zuk-Bar, Nitay, Idelson, Maria, Cohen-Tayar, Yamit, Reubinoff, Benjamin, Ziv, Tamar, Shamay, Meir, Elkon, Ran, Ashery-Padan, Ruth
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9844853/
https://www.ncbi.nlm.nih.gov/pubmed/36649236
http://dx.doi.org/10.1371/journal.pbio.3001924
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author Cohen-Gulkar, Mazal
David, Ahuvit
Messika-Gold, Naama
Eshel, Mai
Ovadia, Shai
Zuk-Bar, Nitay
Idelson, Maria
Cohen-Tayar, Yamit
Reubinoff, Benjamin
Ziv, Tamar
Shamay, Meir
Elkon, Ran
Ashery-Padan, Ruth
author_facet Cohen-Gulkar, Mazal
David, Ahuvit
Messika-Gold, Naama
Eshel, Mai
Ovadia, Shai
Zuk-Bar, Nitay
Idelson, Maria
Cohen-Tayar, Yamit
Reubinoff, Benjamin
Ziv, Tamar
Shamay, Meir
Elkon, Ran
Ashery-Padan, Ruth
author_sort Cohen-Gulkar, Mazal
collection PubMed
description Tissue-specific transcription factors (TFs) control the transcriptome through an association with noncoding regulatory regions (cistromes). Identifying the combination of TFs that dictate specific cell fate, their specific cistromes and examining their involvement in complex human traits remain a major challenge. Here, we focus on the retinal pigmented epithelium (RPE), an essential lineage for retinal development and function and the primary tissue affected in age-related macular degeneration (AMD), a leading cause of blindness. By combining mechanistic findings in stem-cell-derived human RPE, in vivo functional studies in mice and global transcriptomic and proteomic analyses, we revealed that the key developmental TFs LHX2 and OTX2 function together in transcriptional module containing LDB1 and SWI/SNF (BAF) to regulate the RPE transcriptome. Importantly, the intersection between the identified LHX2-OTX2 cistrome with published expression quantitative trait loci, ATAC-seq data from human RPE, and AMD genome-wide association study (GWAS) data, followed by functional validation using a reporter assay, revealed a causal genetic variant that affects AMD risk by altering TRPM1 expression in the RPE through modulation of LHX2 transcriptional activity on its promoter. Taken together, the reported cistrome of LHX2 and OTX2, the identified downstream genes and interacting co-factors reveal the RPE transcription module and uncover a causal regulatory risk single-nucleotide polymorphism (SNP) in the multifactorial common blinding disease AMD.
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spelling pubmed-98448532023-01-18 The LHX2-OTX2 transcriptional regulatory module controls retinal pigmented epithelium differentiation and underlies genetic risk for age-related macular degeneration Cohen-Gulkar, Mazal David, Ahuvit Messika-Gold, Naama Eshel, Mai Ovadia, Shai Zuk-Bar, Nitay Idelson, Maria Cohen-Tayar, Yamit Reubinoff, Benjamin Ziv, Tamar Shamay, Meir Elkon, Ran Ashery-Padan, Ruth PLoS Biol Research Article Tissue-specific transcription factors (TFs) control the transcriptome through an association with noncoding regulatory regions (cistromes). Identifying the combination of TFs that dictate specific cell fate, their specific cistromes and examining their involvement in complex human traits remain a major challenge. Here, we focus on the retinal pigmented epithelium (RPE), an essential lineage for retinal development and function and the primary tissue affected in age-related macular degeneration (AMD), a leading cause of blindness. By combining mechanistic findings in stem-cell-derived human RPE, in vivo functional studies in mice and global transcriptomic and proteomic analyses, we revealed that the key developmental TFs LHX2 and OTX2 function together in transcriptional module containing LDB1 and SWI/SNF (BAF) to regulate the RPE transcriptome. Importantly, the intersection between the identified LHX2-OTX2 cistrome with published expression quantitative trait loci, ATAC-seq data from human RPE, and AMD genome-wide association study (GWAS) data, followed by functional validation using a reporter assay, revealed a causal genetic variant that affects AMD risk by altering TRPM1 expression in the RPE through modulation of LHX2 transcriptional activity on its promoter. Taken together, the reported cistrome of LHX2 and OTX2, the identified downstream genes and interacting co-factors reveal the RPE transcription module and uncover a causal regulatory risk single-nucleotide polymorphism (SNP) in the multifactorial common blinding disease AMD. Public Library of Science 2023-01-17 /pmc/articles/PMC9844853/ /pubmed/36649236 http://dx.doi.org/10.1371/journal.pbio.3001924 Text en © 2023 Cohen-Gulkar et al https://creativecommons.org/licenses/by/4.0/This is an open access article distributed under the terms of the Creative Commons Attribution License (https://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
Cohen-Gulkar, Mazal
David, Ahuvit
Messika-Gold, Naama
Eshel, Mai
Ovadia, Shai
Zuk-Bar, Nitay
Idelson, Maria
Cohen-Tayar, Yamit
Reubinoff, Benjamin
Ziv, Tamar
Shamay, Meir
Elkon, Ran
Ashery-Padan, Ruth
The LHX2-OTX2 transcriptional regulatory module controls retinal pigmented epithelium differentiation and underlies genetic risk for age-related macular degeneration
title The LHX2-OTX2 transcriptional regulatory module controls retinal pigmented epithelium differentiation and underlies genetic risk for age-related macular degeneration
title_full The LHX2-OTX2 transcriptional regulatory module controls retinal pigmented epithelium differentiation and underlies genetic risk for age-related macular degeneration
title_fullStr The LHX2-OTX2 transcriptional regulatory module controls retinal pigmented epithelium differentiation and underlies genetic risk for age-related macular degeneration
title_full_unstemmed The LHX2-OTX2 transcriptional regulatory module controls retinal pigmented epithelium differentiation and underlies genetic risk for age-related macular degeneration
title_short The LHX2-OTX2 transcriptional regulatory module controls retinal pigmented epithelium differentiation and underlies genetic risk for age-related macular degeneration
title_sort lhx2-otx2 transcriptional regulatory module controls retinal pigmented epithelium differentiation and underlies genetic risk for age-related macular degeneration
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9844853/
https://www.ncbi.nlm.nih.gov/pubmed/36649236
http://dx.doi.org/10.1371/journal.pbio.3001924
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