Cargando…
North Carolina macular dystrophy (MCDR1) caused by a novel tandem duplication of the PRDM13 gene
PURPOSE: To identify the underlying cause of disease in a large family with North Carolina macular dystrophy (NCMD). METHODS: A large four-generation family (RFS355) with an autosomal dominant form of NCMD was ascertained. Family members underwent comprehensive visual function evaluations. Blood or...
Autores principales: | , , , , , , , , , , |
---|---|
Formato: | Online Artículo Texto |
Lenguaje: | English |
Publicado: |
Molecular Vision
2016
|
Materias: | |
Acceso en línea: | https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5070570/ https://www.ncbi.nlm.nih.gov/pubmed/27777503 |
_version_ | 1782461162931093504 |
---|---|
author | Bowne, Sara J. Sullivan, Lori S. Wheaton, Dianna K. Locke, Kirsten G. Jones, Kaylie D. Koboldt, Daniel C. Fulton, Robert S. Wilson, Richard K. Blanton, Susan H. Birch, David G. Daiger, Stephen P. |
author_facet | Bowne, Sara J. Sullivan, Lori S. Wheaton, Dianna K. Locke, Kirsten G. Jones, Kaylie D. Koboldt, Daniel C. Fulton, Robert S. Wilson, Richard K. Blanton, Susan H. Birch, David G. Daiger, Stephen P. |
author_sort | Bowne, Sara J. |
collection | PubMed |
description | PURPOSE: To identify the underlying cause of disease in a large family with North Carolina macular dystrophy (NCMD). METHODS: A large four-generation family (RFS355) with an autosomal dominant form of NCMD was ascertained. Family members underwent comprehensive visual function evaluations. Blood or saliva from six affected family members and three unaffected spouses was collected and DNA tested for linkage to the MCDR1 locus on chromosome 6q12. Three affected family members and two unaffected spouses underwent whole exome sequencing (WES) and subsequently, custom capture of the linkage region followed by next-generation sequencing (NGS). Standard PCR and dideoxy sequencing were used to further characterize the mutation. RESULTS: Of the 12 eyes examined in six affected individuals, all but two had Gass grade 3 macular degeneration features. Large central excavation of the retinal and choroid layers, referred to as a macular caldera, was seen in an age-independent manner in the grade 3 eyes. The calderas are unique to affected individuals with MCDR1. Genome-wide linkage mapping and haplotype analysis of markers from the chromosome 6q region were consistent with linkage to the MCDR1 locus. Whole exome sequencing and custom-capture NGS failed to reveal any rare coding variants segregating with the phenotype. Analysis of the custom-capture NGS sequencing data for copy number variants uncovered a tandem duplication of approximately 60 kb on chromosome 6q. This region contains two genes, CCNC and PRDM13. The duplication creates a partial copy of CCNC and a complete copy of PRDM13. The duplication was found in all affected members of the family and is not present in any unaffected members. The duplication was not seen in 200 ethnically matched normal chromosomes. CONCLUSIONS: The cause of disease in the original family with MCDR1 and several others has been recently reported to be dysregulation of the PRDM13 gene, caused by either single base substitutions in a DNase 1 hypersensitive site upstream of the CCNC and PRDM13 genes or a tandem duplication of the PRDM13 gene. The duplication found in the RFS355 family is distinct from the previously reported duplication and provides additional support that dysregulation of PRDM13, not CCNC, is the cause of NCMD mapped to the MCDR1 locus. |
format | Online Article Text |
id | pubmed-5070570 |
institution | National Center for Biotechnology Information |
language | English |
publishDate | 2016 |
publisher | Molecular Vision |
record_format | MEDLINE/PubMed |
spelling | pubmed-50705702016-10-24 North Carolina macular dystrophy (MCDR1) caused by a novel tandem duplication of the PRDM13 gene Bowne, Sara J. Sullivan, Lori S. Wheaton, Dianna K. Locke, Kirsten G. Jones, Kaylie D. Koboldt, Daniel C. Fulton, Robert S. Wilson, Richard K. Blanton, Susan H. Birch, David G. Daiger, Stephen P. Mol Vis Research Article PURPOSE: To identify the underlying cause of disease in a large family with North Carolina macular dystrophy (NCMD). METHODS: A large four-generation family (RFS355) with an autosomal dominant form of NCMD was ascertained. Family members underwent comprehensive visual function evaluations. Blood or saliva from six affected family members and three unaffected spouses was collected and DNA tested for linkage to the MCDR1 locus on chromosome 6q12. Three affected family members and two unaffected spouses underwent whole exome sequencing (WES) and subsequently, custom capture of the linkage region followed by next-generation sequencing (NGS). Standard PCR and dideoxy sequencing were used to further characterize the mutation. RESULTS: Of the 12 eyes examined in six affected individuals, all but two had Gass grade 3 macular degeneration features. Large central excavation of the retinal and choroid layers, referred to as a macular caldera, was seen in an age-independent manner in the grade 3 eyes. The calderas are unique to affected individuals with MCDR1. Genome-wide linkage mapping and haplotype analysis of markers from the chromosome 6q region were consistent with linkage to the MCDR1 locus. Whole exome sequencing and custom-capture NGS failed to reveal any rare coding variants segregating with the phenotype. Analysis of the custom-capture NGS sequencing data for copy number variants uncovered a tandem duplication of approximately 60 kb on chromosome 6q. This region contains two genes, CCNC and PRDM13. The duplication creates a partial copy of CCNC and a complete copy of PRDM13. The duplication was found in all affected members of the family and is not present in any unaffected members. The duplication was not seen in 200 ethnically matched normal chromosomes. CONCLUSIONS: The cause of disease in the original family with MCDR1 and several others has been recently reported to be dysregulation of the PRDM13 gene, caused by either single base substitutions in a DNase 1 hypersensitive site upstream of the CCNC and PRDM13 genes or a tandem duplication of the PRDM13 gene. The duplication found in the RFS355 family is distinct from the previously reported duplication and provides additional support that dysregulation of PRDM13, not CCNC, is the cause of NCMD mapped to the MCDR1 locus. Molecular Vision 2016-10-17 /pmc/articles/PMC5070570/ /pubmed/27777503 Text en Copyright © 2016 Molecular Vision. http://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 Bowne, Sara J. Sullivan, Lori S. Wheaton, Dianna K. Locke, Kirsten G. Jones, Kaylie D. Koboldt, Daniel C. Fulton, Robert S. Wilson, Richard K. Blanton, Susan H. Birch, David G. Daiger, Stephen P. North Carolina macular dystrophy (MCDR1) caused by a novel tandem duplication of the PRDM13 gene |
title | North Carolina macular dystrophy (MCDR1) caused by a novel tandem duplication of the PRDM13 gene |
title_full | North Carolina macular dystrophy (MCDR1) caused by a novel tandem duplication of the PRDM13 gene |
title_fullStr | North Carolina macular dystrophy (MCDR1) caused by a novel tandem duplication of the PRDM13 gene |
title_full_unstemmed | North Carolina macular dystrophy (MCDR1) caused by a novel tandem duplication of the PRDM13 gene |
title_short | North Carolina macular dystrophy (MCDR1) caused by a novel tandem duplication of the PRDM13 gene |
title_sort | north carolina macular dystrophy (mcdr1) caused by a novel tandem duplication of the prdm13 gene |
topic | Research Article |
url | https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5070570/ https://www.ncbi.nlm.nih.gov/pubmed/27777503 |
work_keys_str_mv | AT bownesaraj northcarolinamaculardystrophymcdr1causedbyanoveltandemduplicationoftheprdm13gene AT sullivanloris northcarolinamaculardystrophymcdr1causedbyanoveltandemduplicationoftheprdm13gene AT wheatondiannak northcarolinamaculardystrophymcdr1causedbyanoveltandemduplicationoftheprdm13gene AT lockekirsteng northcarolinamaculardystrophymcdr1causedbyanoveltandemduplicationoftheprdm13gene AT joneskaylied northcarolinamaculardystrophymcdr1causedbyanoveltandemduplicationoftheprdm13gene AT koboldtdanielc northcarolinamaculardystrophymcdr1causedbyanoveltandemduplicationoftheprdm13gene AT fultonroberts northcarolinamaculardystrophymcdr1causedbyanoveltandemduplicationoftheprdm13gene AT wilsonrichardk northcarolinamaculardystrophymcdr1causedbyanoveltandemduplicationoftheprdm13gene AT blantonsusanh northcarolinamaculardystrophymcdr1causedbyanoveltandemduplicationoftheprdm13gene AT birchdavidg northcarolinamaculardystrophymcdr1causedbyanoveltandemduplicationoftheprdm13gene AT daigerstephenp northcarolinamaculardystrophymcdr1causedbyanoveltandemduplicationoftheprdm13gene |