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Role of Decorin Core Protein in Collagen Organisation in Congenital Stromal Corneal Dystrophy (CSCD)

The role of Decorin in organising the extracellular matrix was examined in normal human corneas and in corneas from patients with Congenital Stromal Corneal Dystrophy (CSCD). In CSCD, corneal clouding occurs due to a truncating mutation (c.967delT) in the decorin (DCN) gene. Normal human Decorin pro...

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Autores principales: Kamma-Lorger, Christina S., Pinali, Christian, Martínez, Juan Carlos, Harris, Jon, Young, Robert D., Bredrup, Cecilie, Crosas, Eva, Malfois, Marc, Rødahl, Eyvind, Meek, Keith M., Knupp, Carlo
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2016
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4734740/
https://www.ncbi.nlm.nih.gov/pubmed/26828927
http://dx.doi.org/10.1371/journal.pone.0147948
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author Kamma-Lorger, Christina S.
Pinali, Christian
Martínez, Juan Carlos
Harris, Jon
Young, Robert D.
Bredrup, Cecilie
Crosas, Eva
Malfois, Marc
Rødahl, Eyvind
Meek, Keith M.
Knupp, Carlo
author_facet Kamma-Lorger, Christina S.
Pinali, Christian
Martínez, Juan Carlos
Harris, Jon
Young, Robert D.
Bredrup, Cecilie
Crosas, Eva
Malfois, Marc
Rødahl, Eyvind
Meek, Keith M.
Knupp, Carlo
author_sort Kamma-Lorger, Christina S.
collection PubMed
description The role of Decorin in organising the extracellular matrix was examined in normal human corneas and in corneas from patients with Congenital Stromal Corneal Dystrophy (CSCD). In CSCD, corneal clouding occurs due to a truncating mutation (c.967delT) in the decorin (DCN) gene. Normal human Decorin protein and the truncated one were reconstructed in silico using homology modelling techniques to explore structural changes in the diseased protein. Corneal CSCD specimens were also examined using 3-D electron tomography and Small Angle X-ray diffraction (SAXS), to image the collagen-proteoglycan arrangement and to quantify fibrillar diameters, respectively. Homology modelling showed that truncated Decorin had a different spatial geometry to the normal one, with the truncation removing a major part of the site that interacts with collagen, compromising its ability to bind effectively. Electron tomography showed regions of abnormal stroma, where collagen fibrils came together to form thicker fibrillar structures, showing that Decorin plays a key role in the maintenance of the order in the normal corneal extracellular matrix. Average diameter of individual fibrils throughout the thickness of the cornea however remained normal.
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spelling pubmed-47347402016-02-04 Role of Decorin Core Protein in Collagen Organisation in Congenital Stromal Corneal Dystrophy (CSCD) Kamma-Lorger, Christina S. Pinali, Christian Martínez, Juan Carlos Harris, Jon Young, Robert D. Bredrup, Cecilie Crosas, Eva Malfois, Marc Rødahl, Eyvind Meek, Keith M. Knupp, Carlo PLoS One Research Article The role of Decorin in organising the extracellular matrix was examined in normal human corneas and in corneas from patients with Congenital Stromal Corneal Dystrophy (CSCD). In CSCD, corneal clouding occurs due to a truncating mutation (c.967delT) in the decorin (DCN) gene. Normal human Decorin protein and the truncated one were reconstructed in silico using homology modelling techniques to explore structural changes in the diseased protein. Corneal CSCD specimens were also examined using 3-D electron tomography and Small Angle X-ray diffraction (SAXS), to image the collagen-proteoglycan arrangement and to quantify fibrillar diameters, respectively. Homology modelling showed that truncated Decorin had a different spatial geometry to the normal one, with the truncation removing a major part of the site that interacts with collagen, compromising its ability to bind effectively. Electron tomography showed regions of abnormal stroma, where collagen fibrils came together to form thicker fibrillar structures, showing that Decorin plays a key role in the maintenance of the order in the normal corneal extracellular matrix. Average diameter of individual fibrils throughout the thickness of the cornea however remained normal. Public Library of Science 2016-02-01 /pmc/articles/PMC4734740/ /pubmed/26828927 http://dx.doi.org/10.1371/journal.pone.0147948 Text en © 2016 Kamma-Lorger et al http://creativecommons.org/licenses/by/4.0/ This is an open access article distributed under the terms of the Creative Commons Attribution License (http://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
Kamma-Lorger, Christina S.
Pinali, Christian
Martínez, Juan Carlos
Harris, Jon
Young, Robert D.
Bredrup, Cecilie
Crosas, Eva
Malfois, Marc
Rødahl, Eyvind
Meek, Keith M.
Knupp, Carlo
Role of Decorin Core Protein in Collagen Organisation in Congenital Stromal Corneal Dystrophy (CSCD)
title Role of Decorin Core Protein in Collagen Organisation in Congenital Stromal Corneal Dystrophy (CSCD)
title_full Role of Decorin Core Protein in Collagen Organisation in Congenital Stromal Corneal Dystrophy (CSCD)
title_fullStr Role of Decorin Core Protein in Collagen Organisation in Congenital Stromal Corneal Dystrophy (CSCD)
title_full_unstemmed Role of Decorin Core Protein in Collagen Organisation in Congenital Stromal Corneal Dystrophy (CSCD)
title_short Role of Decorin Core Protein in Collagen Organisation in Congenital Stromal Corneal Dystrophy (CSCD)
title_sort role of decorin core protein in collagen organisation in congenital stromal corneal dystrophy (cscd)
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4734740/
https://www.ncbi.nlm.nih.gov/pubmed/26828927
http://dx.doi.org/10.1371/journal.pone.0147948
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