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Lens Epithelial Explants Treated with Vitreous Humor Undergo Alterations in Chromatin Landscape with Concurrent Activation of Genes Associated with Fiber Cell Differentiation and Innate Immune Response

Lens epithelial explants are comprised of lens epithelial cells cultured in vitro on their native basement membrane, the lens capsule. Biologists have used lens epithelial explants to study many different cellular processes including lens fiber cell differentiation. In these studies, fiber different...

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Autores principales: Upreti, Anil, Padula, Stephanie L., Tangeman, Jared A., Wagner, Brad D., O’Connell, Michael J., Jaquish, Tycho J., Palko, Raye K., Mantz, Courtney J., Anand, Deepti, Lovicu, Frank J., Lachke, Salil A., Robinson, Michael L.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9914805/
https://www.ncbi.nlm.nih.gov/pubmed/36766843
http://dx.doi.org/10.3390/cells12030501
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author Upreti, Anil
Padula, Stephanie L.
Tangeman, Jared A.
Wagner, Brad D.
O’Connell, Michael J.
Jaquish, Tycho J.
Palko, Raye K.
Mantz, Courtney J.
Anand, Deepti
Lovicu, Frank J.
Lachke, Salil A.
Robinson, Michael L.
author_facet Upreti, Anil
Padula, Stephanie L.
Tangeman, Jared A.
Wagner, Brad D.
O’Connell, Michael J.
Jaquish, Tycho J.
Palko, Raye K.
Mantz, Courtney J.
Anand, Deepti
Lovicu, Frank J.
Lachke, Salil A.
Robinson, Michael L.
author_sort Upreti, Anil
collection PubMed
description Lens epithelial explants are comprised of lens epithelial cells cultured in vitro on their native basement membrane, the lens capsule. Biologists have used lens epithelial explants to study many different cellular processes including lens fiber cell differentiation. In these studies, fiber differentiation is typically measured by cellular elongation and the expression of a few proteins characteristically expressed by lens fiber cells in situ. Chromatin and RNA was collected from lens epithelial explants cultured in either un-supplemented media or media containing 50% bovine vitreous humor for one or five days. Chromatin for ATAC-sequencing and RNA for RNA-sequencing was prepared from explants to assess regions of accessible chromatin and to quantitatively measure gene expression, respectively. Vitreous humor increased chromatin accessibility in promoter regions of genes associated with fiber differentiation and, surprisingly, an immune response, and this was associated with increased transcript levels for these genes. In contrast, vitreous had little effect on the accessibility of the genes highly expressed in the lens epithelium despite dramatic reductions in their mRNA transcripts. An unbiased analysis of differentially accessible regions revealed an enrichment of cis-regulatory motifs for RUNX, SOX and TEAD transcription factors that may drive differential gene expression in response to vitreous.
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spelling pubmed-99148052023-02-11 Lens Epithelial Explants Treated with Vitreous Humor Undergo Alterations in Chromatin Landscape with Concurrent Activation of Genes Associated with Fiber Cell Differentiation and Innate Immune Response Upreti, Anil Padula, Stephanie L. Tangeman, Jared A. Wagner, Brad D. O’Connell, Michael J. Jaquish, Tycho J. Palko, Raye K. Mantz, Courtney J. Anand, Deepti Lovicu, Frank J. Lachke, Salil A. Robinson, Michael L. Cells Article Lens epithelial explants are comprised of lens epithelial cells cultured in vitro on their native basement membrane, the lens capsule. Biologists have used lens epithelial explants to study many different cellular processes including lens fiber cell differentiation. In these studies, fiber differentiation is typically measured by cellular elongation and the expression of a few proteins characteristically expressed by lens fiber cells in situ. Chromatin and RNA was collected from lens epithelial explants cultured in either un-supplemented media or media containing 50% bovine vitreous humor for one or five days. Chromatin for ATAC-sequencing and RNA for RNA-sequencing was prepared from explants to assess regions of accessible chromatin and to quantitatively measure gene expression, respectively. Vitreous humor increased chromatin accessibility in promoter regions of genes associated with fiber differentiation and, surprisingly, an immune response, and this was associated with increased transcript levels for these genes. In contrast, vitreous had little effect on the accessibility of the genes highly expressed in the lens epithelium despite dramatic reductions in their mRNA transcripts. An unbiased analysis of differentially accessible regions revealed an enrichment of cis-regulatory motifs for RUNX, SOX and TEAD transcription factors that may drive differential gene expression in response to vitreous. MDPI 2023-02-03 /pmc/articles/PMC9914805/ /pubmed/36766843 http://dx.doi.org/10.3390/cells12030501 Text en © 2023 by the authors. https://creativecommons.org/licenses/by/4.0/Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (https://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Upreti, Anil
Padula, Stephanie L.
Tangeman, Jared A.
Wagner, Brad D.
O’Connell, Michael J.
Jaquish, Tycho J.
Palko, Raye K.
Mantz, Courtney J.
Anand, Deepti
Lovicu, Frank J.
Lachke, Salil A.
Robinson, Michael L.
Lens Epithelial Explants Treated with Vitreous Humor Undergo Alterations in Chromatin Landscape with Concurrent Activation of Genes Associated with Fiber Cell Differentiation and Innate Immune Response
title Lens Epithelial Explants Treated with Vitreous Humor Undergo Alterations in Chromatin Landscape with Concurrent Activation of Genes Associated with Fiber Cell Differentiation and Innate Immune Response
title_full Lens Epithelial Explants Treated with Vitreous Humor Undergo Alterations in Chromatin Landscape with Concurrent Activation of Genes Associated with Fiber Cell Differentiation and Innate Immune Response
title_fullStr Lens Epithelial Explants Treated with Vitreous Humor Undergo Alterations in Chromatin Landscape with Concurrent Activation of Genes Associated with Fiber Cell Differentiation and Innate Immune Response
title_full_unstemmed Lens Epithelial Explants Treated with Vitreous Humor Undergo Alterations in Chromatin Landscape with Concurrent Activation of Genes Associated with Fiber Cell Differentiation and Innate Immune Response
title_short Lens Epithelial Explants Treated with Vitreous Humor Undergo Alterations in Chromatin Landscape with Concurrent Activation of Genes Associated with Fiber Cell Differentiation and Innate Immune Response
title_sort lens epithelial explants treated with vitreous humor undergo alterations in chromatin landscape with concurrent activation of genes associated with fiber cell differentiation and innate immune response
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9914805/
https://www.ncbi.nlm.nih.gov/pubmed/36766843
http://dx.doi.org/10.3390/cells12030501
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