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Further evaluation of differential expression of keratoconus candidate genes in human corneas

BACKGROUND: Keratoconus (KTCN) is a progressive eye disease, characterized by changes in the shape and thickness of the cornea that results in loss of visual acuity. While numerous KTCN candidate genes have been identified, the genetic etiology of the disease remains undetermined. To further investi...

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Autores principales: Karolak, Justyna A., Ginter-Matuszewska, Barbara, Tomela, Katarzyna, Kabza, Michal, Nowak-Malczewska, Dorota M., Rydzanicz, Malgorzata, Polakowski, Piotr, Szaflik, Jacek P., Gajecka, Marzena
Formato: Online Artículo Texto
Lenguaje:English
Publicado: PeerJ Inc. 2020
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7443321/
https://www.ncbi.nlm.nih.gov/pubmed/32879808
http://dx.doi.org/10.7717/peerj.9793
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author Karolak, Justyna A.
Ginter-Matuszewska, Barbara
Tomela, Katarzyna
Kabza, Michal
Nowak-Malczewska, Dorota M.
Rydzanicz, Malgorzata
Polakowski, Piotr
Szaflik, Jacek P.
Gajecka, Marzena
author_facet Karolak, Justyna A.
Ginter-Matuszewska, Barbara
Tomela, Katarzyna
Kabza, Michal
Nowak-Malczewska, Dorota M.
Rydzanicz, Malgorzata
Polakowski, Piotr
Szaflik, Jacek P.
Gajecka, Marzena
author_sort Karolak, Justyna A.
collection PubMed
description BACKGROUND: Keratoconus (KTCN) is a progressive eye disease, characterized by changes in the shape and thickness of the cornea that results in loss of visual acuity. While numerous KTCN candidate genes have been identified, the genetic etiology of the disease remains undetermined. To further investigate and verify the contribution of particular genetic factors to KTCN, we assessed 45 candidate genes previously indicated as involved in KTCN etiology based on transcriptomic and genomic data. METHODS: The RealTime ready Custom Panel, covering 45 KTCN candidate genes and two reference transcripts, has been designed. Then, the expression profiles have been assessed using the RT-qPCR assay in six KTCN and six non-KTCN human corneas, obtained from individuals undergoing a penetrating keratoplasty procedure. RESULTS: In total, 35 genes exhibiting differential expression between KTCN and non-KTCN corneas have been identified. Among these genes were ones linked to the extracellular matrix formation, including collagen synthesis or the TGF-β, Hippo, and Wnt signaling pathways. The most downregulated transcripts in KTCN corneas were CTGF, TGFB3, ZNF469, COL5A2, SMAD7, and SPARC, while TGFBI and SLC4A11 were the most upregulated ones. Hierarchical clustering of expression profiles demonstrated almost clear separation between KTCN and non-KTCN corneas. The gene expression levels determined using RT-qPCR showed a strong correlation with previous RNA sequencing (RNA-Seq) results. CONCLUSIONS: A strong correlation between RT-qPCR and earlier RNA-Seq data confirms the possible involvement of genes from collagen synthesis and the TGF-β, Hippo, and Wnt signaling pathways in KTCN etiology. Our data also revealed altered expression of several genes, such as LOX, SPARC, and ZNF469, in which single nucleotide variants have been frequently identified in KTCN. These findings further highlight the heterogeneous nature of KTCN.
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spelling pubmed-74433212020-09-01 Further evaluation of differential expression of keratoconus candidate genes in human corneas Karolak, Justyna A. Ginter-Matuszewska, Barbara Tomela, Katarzyna Kabza, Michal Nowak-Malczewska, Dorota M. Rydzanicz, Malgorzata Polakowski, Piotr Szaflik, Jacek P. Gajecka, Marzena PeerJ Genetics BACKGROUND: Keratoconus (KTCN) is a progressive eye disease, characterized by changes in the shape and thickness of the cornea that results in loss of visual acuity. While numerous KTCN candidate genes have been identified, the genetic etiology of the disease remains undetermined. To further investigate and verify the contribution of particular genetic factors to KTCN, we assessed 45 candidate genes previously indicated as involved in KTCN etiology based on transcriptomic and genomic data. METHODS: The RealTime ready Custom Panel, covering 45 KTCN candidate genes and two reference transcripts, has been designed. Then, the expression profiles have been assessed using the RT-qPCR assay in six KTCN and six non-KTCN human corneas, obtained from individuals undergoing a penetrating keratoplasty procedure. RESULTS: In total, 35 genes exhibiting differential expression between KTCN and non-KTCN corneas have been identified. Among these genes were ones linked to the extracellular matrix formation, including collagen synthesis or the TGF-β, Hippo, and Wnt signaling pathways. The most downregulated transcripts in KTCN corneas were CTGF, TGFB3, ZNF469, COL5A2, SMAD7, and SPARC, while TGFBI and SLC4A11 were the most upregulated ones. Hierarchical clustering of expression profiles demonstrated almost clear separation between KTCN and non-KTCN corneas. The gene expression levels determined using RT-qPCR showed a strong correlation with previous RNA sequencing (RNA-Seq) results. CONCLUSIONS: A strong correlation between RT-qPCR and earlier RNA-Seq data confirms the possible involvement of genes from collagen synthesis and the TGF-β, Hippo, and Wnt signaling pathways in KTCN etiology. Our data also revealed altered expression of several genes, such as LOX, SPARC, and ZNF469, in which single nucleotide variants have been frequently identified in KTCN. These findings further highlight the heterogeneous nature of KTCN. PeerJ Inc. 2020-08-20 /pmc/articles/PMC7443321/ /pubmed/32879808 http://dx.doi.org/10.7717/peerj.9793 Text en © 2020 Karolak 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, reproduction and adaptation in any medium and for any purpose provided that it is properly attributed. For attribution, the original author(s), title, publication source (PeerJ) and either DOI or URL of the article must be cited.
spellingShingle Genetics
Karolak, Justyna A.
Ginter-Matuszewska, Barbara
Tomela, Katarzyna
Kabza, Michal
Nowak-Malczewska, Dorota M.
Rydzanicz, Malgorzata
Polakowski, Piotr
Szaflik, Jacek P.
Gajecka, Marzena
Further evaluation of differential expression of keratoconus candidate genes in human corneas
title Further evaluation of differential expression of keratoconus candidate genes in human corneas
title_full Further evaluation of differential expression of keratoconus candidate genes in human corneas
title_fullStr Further evaluation of differential expression of keratoconus candidate genes in human corneas
title_full_unstemmed Further evaluation of differential expression of keratoconus candidate genes in human corneas
title_short Further evaluation of differential expression of keratoconus candidate genes in human corneas
title_sort further evaluation of differential expression of keratoconus candidate genes in human corneas
topic Genetics
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7443321/
https://www.ncbi.nlm.nih.gov/pubmed/32879808
http://dx.doi.org/10.7717/peerj.9793
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