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Novel SIX6 mutations cause recessively inherited congenital cataract, microcornea, and corneal opacification with or without coloboma and microphthalmia

PURPOSE: To investigate the molecular basis of recessively inherited congenital cataract, microcornea, and corneal opacification with or without coloboma and microphthalmia in two consanguineous families. METHODS: Conventional autozygosity mapping was performed using single nucleotide polymorphism (...

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Autores principales: Panagiotou, Evangelia S., Fernandez-Fuentes, Narcis, Farraj, Layal Abi, McKibbin, Martin, Elçioglu, Nursel H., Jafri, Hussain, Cerman, Eren, Parry, David A., Logan, Clare V., Johnson, Colin A., Inglehearn, Chris F., Toomes, Carmel, Ali, Manir
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Molecular Vision 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9122475/
https://www.ncbi.nlm.nih.gov/pubmed/35693420
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author Panagiotou, Evangelia S.
Fernandez-Fuentes, Narcis
Farraj, Layal Abi
McKibbin, Martin
Elçioglu, Nursel H.
Jafri, Hussain
Cerman, Eren
Parry, David A.
Logan, Clare V.
Johnson, Colin A.
Inglehearn, Chris F.
Toomes, Carmel
Ali, Manir
author_facet Panagiotou, Evangelia S.
Fernandez-Fuentes, Narcis
Farraj, Layal Abi
McKibbin, Martin
Elçioglu, Nursel H.
Jafri, Hussain
Cerman, Eren
Parry, David A.
Logan, Clare V.
Johnson, Colin A.
Inglehearn, Chris F.
Toomes, Carmel
Ali, Manir
author_sort Panagiotou, Evangelia S.
collection PubMed
description PURPOSE: To investigate the molecular basis of recessively inherited congenital cataract, microcornea, and corneal opacification with or without coloboma and microphthalmia in two consanguineous families. METHODS: Conventional autozygosity mapping was performed using single nucleotide polymorphism (SNP) microarrays. Whole-exome sequencing was completed on genomic DNA from one affected member of each family. Exome sequence data were also used for homozygosity mapping and copy number variation analysis. PCR and Sanger sequencing were used to confirm the identification of mutations and to screen further patients. Evolutionary conservation of protein sequences was assessed using CLUSTALW, and protein structures were modeled using PyMol. RESULTS: In family MEP68, a novel homozygous nucleotide substitution in SIX6 was found, c.547G>C, that converts the evolutionarily conserved aspartic acid residue at the 183(rd) amino acid in the protein to a histidine, p.(Asp183His). This residue mapped to the third helix of the DNA-binding homeobox domain in SIX6, which interacts with the major groove of double-stranded DNA. This interaction is likely to be disrupted by the mutation. In family F1332, a novel homozygous 1034 bp deletion that encompasses the first exon of SIX6 was identified, chr14:g.60975890_60976923del. Both mutations segregated with the disease phenotype as expected for a recessive condition and were absent from publicly available variant databases. CONCLUSIONS: Our findings expand the mutation spectrum in this form of inherited eye disease and confirm that homozygous human SIX6 mutations cause a developmental spectrum of ocular phenotypes that includes not only the previously described features of microphthalmia, coloboma, and congenital cataract but also corneal abnormalities.
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spelling pubmed-91224752022-06-10 Novel SIX6 mutations cause recessively inherited congenital cataract, microcornea, and corneal opacification with or without coloboma and microphthalmia Panagiotou, Evangelia S. Fernandez-Fuentes, Narcis Farraj, Layal Abi McKibbin, Martin Elçioglu, Nursel H. Jafri, Hussain Cerman, Eren Parry, David A. Logan, Clare V. Johnson, Colin A. Inglehearn, Chris F. Toomes, Carmel Ali, Manir Mol Vis Research Article PURPOSE: To investigate the molecular basis of recessively inherited congenital cataract, microcornea, and corneal opacification with or without coloboma and microphthalmia in two consanguineous families. METHODS: Conventional autozygosity mapping was performed using single nucleotide polymorphism (SNP) microarrays. Whole-exome sequencing was completed on genomic DNA from one affected member of each family. Exome sequence data were also used for homozygosity mapping and copy number variation analysis. PCR and Sanger sequencing were used to confirm the identification of mutations and to screen further patients. Evolutionary conservation of protein sequences was assessed using CLUSTALW, and protein structures were modeled using PyMol. RESULTS: In family MEP68, a novel homozygous nucleotide substitution in SIX6 was found, c.547G>C, that converts the evolutionarily conserved aspartic acid residue at the 183(rd) amino acid in the protein to a histidine, p.(Asp183His). This residue mapped to the third helix of the DNA-binding homeobox domain in SIX6, which interacts with the major groove of double-stranded DNA. This interaction is likely to be disrupted by the mutation. In family F1332, a novel homozygous 1034 bp deletion that encompasses the first exon of SIX6 was identified, chr14:g.60975890_60976923del. Both mutations segregated with the disease phenotype as expected for a recessive condition and were absent from publicly available variant databases. CONCLUSIONS: Our findings expand the mutation spectrum in this form of inherited eye disease and confirm that homozygous human SIX6 mutations cause a developmental spectrum of ocular phenotypes that includes not only the previously described features of microphthalmia, coloboma, and congenital cataract but also corneal abnormalities. Molecular Vision 2022-05-17 /pmc/articles/PMC9122475/ /pubmed/35693420 Text en Copyright © 2022 Molecular Vision. https://creativecommons.org/licenses/by-nc-nd/3.0/This is an open-access article distributed under the terms of the Creative Commons Attribution License, which permits unrestricted use, distribution, and reproduction in any medium, provided the original work is properly cited, used for non-commercial purposes, and is not altered or transformed.
spellingShingle Research Article
Panagiotou, Evangelia S.
Fernandez-Fuentes, Narcis
Farraj, Layal Abi
McKibbin, Martin
Elçioglu, Nursel H.
Jafri, Hussain
Cerman, Eren
Parry, David A.
Logan, Clare V.
Johnson, Colin A.
Inglehearn, Chris F.
Toomes, Carmel
Ali, Manir
Novel SIX6 mutations cause recessively inherited congenital cataract, microcornea, and corneal opacification with or without coloboma and microphthalmia
title Novel SIX6 mutations cause recessively inherited congenital cataract, microcornea, and corneal opacification with or without coloboma and microphthalmia
title_full Novel SIX6 mutations cause recessively inherited congenital cataract, microcornea, and corneal opacification with or without coloboma and microphthalmia
title_fullStr Novel SIX6 mutations cause recessively inherited congenital cataract, microcornea, and corneal opacification with or without coloboma and microphthalmia
title_full_unstemmed Novel SIX6 mutations cause recessively inherited congenital cataract, microcornea, and corneal opacification with or without coloboma and microphthalmia
title_short Novel SIX6 mutations cause recessively inherited congenital cataract, microcornea, and corneal opacification with or without coloboma and microphthalmia
title_sort novel six6 mutations cause recessively inherited congenital cataract, microcornea, and corneal opacification with or without coloboma and microphthalmia
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9122475/
https://www.ncbi.nlm.nih.gov/pubmed/35693420
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