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Exon-Trapping Assay Improves Clinical Interpretation of COL11A1 and COL11A2 Intronic Variants in Stickler Syndrome Type 2 and Otospondylomegaepiphyseal Dysplasia

Stickler syndrome (SS) is a hereditary connective tissue disorder affecting bones, eyes, and hearing. Type 2 SS and the SS variant otospondylomegaepiphyseal dysplasia (OSMED) are caused by deleterious variants in COL11A1 and COL11A2, respectively. In both genes, available database information indica...

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Autores principales: Micale, Lucia, Morlino, Silvia, Schirizzi, Annalisa, Agolini, Emanuele, Nardella, Grazia, Fusco, Carmela, Castellana, Stefano, Guarnieri, Vito, Villa, Roberta, Bedeschi, Maria Francesca, Grammatico, Paola, Novelli, Antonio, Castori, Marco
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2020
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7766184/
https://www.ncbi.nlm.nih.gov/pubmed/33348901
http://dx.doi.org/10.3390/genes11121513
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author Micale, Lucia
Morlino, Silvia
Schirizzi, Annalisa
Agolini, Emanuele
Nardella, Grazia
Fusco, Carmela
Castellana, Stefano
Guarnieri, Vito
Villa, Roberta
Bedeschi, Maria Francesca
Grammatico, Paola
Novelli, Antonio
Castori, Marco
author_facet Micale, Lucia
Morlino, Silvia
Schirizzi, Annalisa
Agolini, Emanuele
Nardella, Grazia
Fusco, Carmela
Castellana, Stefano
Guarnieri, Vito
Villa, Roberta
Bedeschi, Maria Francesca
Grammatico, Paola
Novelli, Antonio
Castori, Marco
author_sort Micale, Lucia
collection PubMed
description Stickler syndrome (SS) is a hereditary connective tissue disorder affecting bones, eyes, and hearing. Type 2 SS and the SS variant otospondylomegaepiphyseal dysplasia (OSMED) are caused by deleterious variants in COL11A1 and COL11A2, respectively. In both genes, available database information indicates a high rate of potentially deleterious intronic variants, but published evidence of their biological effect is usually insufficient for a definite clinical interpretation. We report four previously unpublished intronic variants in COL11A1 (c.2241 + 5G>T, c.2809 − 2A>G, c.3168 + 5G>C) and COL11A2 (c.4392 + 1G>A) identified in type 2 SS/OSMED individuals. The pathogenic effect of these variants was first predicted in silico and then investigated by an exon-trapping assay. We demonstrated that all variants can induce exon in-frame deletions, which lead to the synthesis of shorter collagen XI α1 or 2 chains. Lacking residues are located in the α-triple helical region, which has a crucial role in regulating collagen fibrillogenesis. In conclusion, this study suggests that these alternative COL11A1 and COL11A2 transcripts might result in aberrant triple helix collagen. Our approach may help to improve the diagnostic molecular pathway of COL11-related disorders.
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spelling pubmed-77661842020-12-28 Exon-Trapping Assay Improves Clinical Interpretation of COL11A1 and COL11A2 Intronic Variants in Stickler Syndrome Type 2 and Otospondylomegaepiphyseal Dysplasia Micale, Lucia Morlino, Silvia Schirizzi, Annalisa Agolini, Emanuele Nardella, Grazia Fusco, Carmela Castellana, Stefano Guarnieri, Vito Villa, Roberta Bedeschi, Maria Francesca Grammatico, Paola Novelli, Antonio Castori, Marco Genes (Basel) Article Stickler syndrome (SS) is a hereditary connective tissue disorder affecting bones, eyes, and hearing. Type 2 SS and the SS variant otospondylomegaepiphyseal dysplasia (OSMED) are caused by deleterious variants in COL11A1 and COL11A2, respectively. In both genes, available database information indicates a high rate of potentially deleterious intronic variants, but published evidence of their biological effect is usually insufficient for a definite clinical interpretation. We report four previously unpublished intronic variants in COL11A1 (c.2241 + 5G>T, c.2809 − 2A>G, c.3168 + 5G>C) and COL11A2 (c.4392 + 1G>A) identified in type 2 SS/OSMED individuals. The pathogenic effect of these variants was first predicted in silico and then investigated by an exon-trapping assay. We demonstrated that all variants can induce exon in-frame deletions, which lead to the synthesis of shorter collagen XI α1 or 2 chains. Lacking residues are located in the α-triple helical region, which has a crucial role in regulating collagen fibrillogenesis. In conclusion, this study suggests that these alternative COL11A1 and COL11A2 transcripts might result in aberrant triple helix collagen. Our approach may help to improve the diagnostic molecular pathway of COL11-related disorders. MDPI 2020-12-17 /pmc/articles/PMC7766184/ /pubmed/33348901 http://dx.doi.org/10.3390/genes11121513 Text en © 2020 by the authors. 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 (http://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Micale, Lucia
Morlino, Silvia
Schirizzi, Annalisa
Agolini, Emanuele
Nardella, Grazia
Fusco, Carmela
Castellana, Stefano
Guarnieri, Vito
Villa, Roberta
Bedeschi, Maria Francesca
Grammatico, Paola
Novelli, Antonio
Castori, Marco
Exon-Trapping Assay Improves Clinical Interpretation of COL11A1 and COL11A2 Intronic Variants in Stickler Syndrome Type 2 and Otospondylomegaepiphyseal Dysplasia
title Exon-Trapping Assay Improves Clinical Interpretation of COL11A1 and COL11A2 Intronic Variants in Stickler Syndrome Type 2 and Otospondylomegaepiphyseal Dysplasia
title_full Exon-Trapping Assay Improves Clinical Interpretation of COL11A1 and COL11A2 Intronic Variants in Stickler Syndrome Type 2 and Otospondylomegaepiphyseal Dysplasia
title_fullStr Exon-Trapping Assay Improves Clinical Interpretation of COL11A1 and COL11A2 Intronic Variants in Stickler Syndrome Type 2 and Otospondylomegaepiphyseal Dysplasia
title_full_unstemmed Exon-Trapping Assay Improves Clinical Interpretation of COL11A1 and COL11A2 Intronic Variants in Stickler Syndrome Type 2 and Otospondylomegaepiphyseal Dysplasia
title_short Exon-Trapping Assay Improves Clinical Interpretation of COL11A1 and COL11A2 Intronic Variants in Stickler Syndrome Type 2 and Otospondylomegaepiphyseal Dysplasia
title_sort exon-trapping assay improves clinical interpretation of col11a1 and col11a2 intronic variants in stickler syndrome type 2 and otospondylomegaepiphyseal dysplasia
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7766184/
https://www.ncbi.nlm.nih.gov/pubmed/33348901
http://dx.doi.org/10.3390/genes11121513
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