Cargando…

Whole-genome DNA/RNA sequencing identifies truncating mutations in RBCK1 in a novel Mendelian disease with neuromuscular and cardiac involvement

BACKGROUND: Whole-exome sequencing has identified the causes of several Mendelian diseases by analyzing multiple unrelated cases, but it is more challenging to resolve the cause of extremely rare and suspected Mendelian diseases from individual families. We identified a family quartet with two child...

Descripción completa

Detalles Bibliográficos
Autores principales: Wang, Kai, Kim, Cecilia, Bradfield, Jonathan, Guo, Yunfei, Toskala, Elina, Otieno, Frederick G, Hou, Cuiping, Thomas, Kelly, Cardinale, Christopher, Lyon, Gholson J, Golhar, Ryan, Hakonarson, Hakon
Formato: Online Artículo Texto
Lenguaje:English
Publicado: BioMed Central 2013
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3971341/
https://www.ncbi.nlm.nih.gov/pubmed/23889995
http://dx.doi.org/10.1186/gm471
_version_ 1782309461229043712
author Wang, Kai
Kim, Cecilia
Bradfield, Jonathan
Guo, Yunfei
Toskala, Elina
Otieno, Frederick G
Hou, Cuiping
Thomas, Kelly
Cardinale, Christopher
Lyon, Gholson J
Golhar, Ryan
Hakonarson, Hakon
author_facet Wang, Kai
Kim, Cecilia
Bradfield, Jonathan
Guo, Yunfei
Toskala, Elina
Otieno, Frederick G
Hou, Cuiping
Thomas, Kelly
Cardinale, Christopher
Lyon, Gholson J
Golhar, Ryan
Hakonarson, Hakon
author_sort Wang, Kai
collection PubMed
description BACKGROUND: Whole-exome sequencing has identified the causes of several Mendelian diseases by analyzing multiple unrelated cases, but it is more challenging to resolve the cause of extremely rare and suspected Mendelian diseases from individual families. We identified a family quartet with two children, both affected with a previously unreported disease, characterized by progressive muscular weakness and cardiomyopathy, with normal intelligence. During the course of the study, we identified one additional unrelated patient with a comparable phenotype. METHODS: We performed whole-genome sequencing (Complete Genomics platform), whole-exome sequencing (Agilent SureSelect exon capture and Illumina Genome Analyzer II platform), SNP genotyping (Illumina HumanHap550 SNP array) and Sanger sequencing on blood samples, as well as RNA-Seq (Illumina HiSeq platform) on transformed lymphoblastoid cell lines. RESULTS: From whole-genome sequence data, we identified RBCK1, a gene encoding an E3 ubiquitin-protein ligase, as the most likely candidate gene, with two protein-truncating mutations in probands in the first family. However, exome data failed to nominate RBCK1 as a candidate gene, due to poor regional coverage. Sanger sequencing identified a private homozygous splice variant in RBCK1 in the proband in the second family, yet SNP genotyping revealed a 1.2Mb copy-neutral region of homozygosity covering RBCK1. RNA-Seq confirmed aberrant splicing of RBCK1 transcripts, resulting in truncated protein products. CONCLUSIONS: While the exact mechanism by which these mutations cause disease is unknown, our study represents an example of how the combined use of whole-genome DNA and RNA sequencing can identify a disease-predisposing gene for a novel and extremely rare Mendelian disease.
format Online
Article
Text
id pubmed-3971341
institution National Center for Biotechnology Information
language English
publishDate 2013
publisher BioMed Central
record_format MEDLINE/PubMed
spelling pubmed-39713412014-04-02 Whole-genome DNA/RNA sequencing identifies truncating mutations in RBCK1 in a novel Mendelian disease with neuromuscular and cardiac involvement Wang, Kai Kim, Cecilia Bradfield, Jonathan Guo, Yunfei Toskala, Elina Otieno, Frederick G Hou, Cuiping Thomas, Kelly Cardinale, Christopher Lyon, Gholson J Golhar, Ryan Hakonarson, Hakon Genome Med Research BACKGROUND: Whole-exome sequencing has identified the causes of several Mendelian diseases by analyzing multiple unrelated cases, but it is more challenging to resolve the cause of extremely rare and suspected Mendelian diseases from individual families. We identified a family quartet with two children, both affected with a previously unreported disease, characterized by progressive muscular weakness and cardiomyopathy, with normal intelligence. During the course of the study, we identified one additional unrelated patient with a comparable phenotype. METHODS: We performed whole-genome sequencing (Complete Genomics platform), whole-exome sequencing (Agilent SureSelect exon capture and Illumina Genome Analyzer II platform), SNP genotyping (Illumina HumanHap550 SNP array) and Sanger sequencing on blood samples, as well as RNA-Seq (Illumina HiSeq platform) on transformed lymphoblastoid cell lines. RESULTS: From whole-genome sequence data, we identified RBCK1, a gene encoding an E3 ubiquitin-protein ligase, as the most likely candidate gene, with two protein-truncating mutations in probands in the first family. However, exome data failed to nominate RBCK1 as a candidate gene, due to poor regional coverage. Sanger sequencing identified a private homozygous splice variant in RBCK1 in the proband in the second family, yet SNP genotyping revealed a 1.2Mb copy-neutral region of homozygosity covering RBCK1. RNA-Seq confirmed aberrant splicing of RBCK1 transcripts, resulting in truncated protein products. CONCLUSIONS: While the exact mechanism by which these mutations cause disease is unknown, our study represents an example of how the combined use of whole-genome DNA and RNA sequencing can identify a disease-predisposing gene for a novel and extremely rare Mendelian disease. BioMed Central 2013-07-26 /pmc/articles/PMC3971341/ /pubmed/23889995 http://dx.doi.org/10.1186/gm471 Text en Copyright © 2013 Wang et al.; licensee BioMed Central Ltd. http://creativecommons.org/licenses/by/2.0 This is an open access article distributed under the terms of the Creative Commons Attribution License (http://creativecommons.org/licenses/by/2.0), which permits unrestricted use, distribution, and reproduction in any medium, provided the original work is properly cited.
spellingShingle Research
Wang, Kai
Kim, Cecilia
Bradfield, Jonathan
Guo, Yunfei
Toskala, Elina
Otieno, Frederick G
Hou, Cuiping
Thomas, Kelly
Cardinale, Christopher
Lyon, Gholson J
Golhar, Ryan
Hakonarson, Hakon
Whole-genome DNA/RNA sequencing identifies truncating mutations in RBCK1 in a novel Mendelian disease with neuromuscular and cardiac involvement
title Whole-genome DNA/RNA sequencing identifies truncating mutations in RBCK1 in a novel Mendelian disease with neuromuscular and cardiac involvement
title_full Whole-genome DNA/RNA sequencing identifies truncating mutations in RBCK1 in a novel Mendelian disease with neuromuscular and cardiac involvement
title_fullStr Whole-genome DNA/RNA sequencing identifies truncating mutations in RBCK1 in a novel Mendelian disease with neuromuscular and cardiac involvement
title_full_unstemmed Whole-genome DNA/RNA sequencing identifies truncating mutations in RBCK1 in a novel Mendelian disease with neuromuscular and cardiac involvement
title_short Whole-genome DNA/RNA sequencing identifies truncating mutations in RBCK1 in a novel Mendelian disease with neuromuscular and cardiac involvement
title_sort whole-genome dna/rna sequencing identifies truncating mutations in rbck1 in a novel mendelian disease with neuromuscular and cardiac involvement
topic Research
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3971341/
https://www.ncbi.nlm.nih.gov/pubmed/23889995
http://dx.doi.org/10.1186/gm471
work_keys_str_mv AT wangkai wholegenomednarnasequencingidentifiestruncatingmutationsinrbck1inanovelmendeliandiseasewithneuromuscularandcardiacinvolvement
AT kimcecilia wholegenomednarnasequencingidentifiestruncatingmutationsinrbck1inanovelmendeliandiseasewithneuromuscularandcardiacinvolvement
AT bradfieldjonathan wholegenomednarnasequencingidentifiestruncatingmutationsinrbck1inanovelmendeliandiseasewithneuromuscularandcardiacinvolvement
AT guoyunfei wholegenomednarnasequencingidentifiestruncatingmutationsinrbck1inanovelmendeliandiseasewithneuromuscularandcardiacinvolvement
AT toskalaelina wholegenomednarnasequencingidentifiestruncatingmutationsinrbck1inanovelmendeliandiseasewithneuromuscularandcardiacinvolvement
AT otienofrederickg wholegenomednarnasequencingidentifiestruncatingmutationsinrbck1inanovelmendeliandiseasewithneuromuscularandcardiacinvolvement
AT houcuiping wholegenomednarnasequencingidentifiestruncatingmutationsinrbck1inanovelmendeliandiseasewithneuromuscularandcardiacinvolvement
AT thomaskelly wholegenomednarnasequencingidentifiestruncatingmutationsinrbck1inanovelmendeliandiseasewithneuromuscularandcardiacinvolvement
AT cardinalechristopher wholegenomednarnasequencingidentifiestruncatingmutationsinrbck1inanovelmendeliandiseasewithneuromuscularandcardiacinvolvement
AT lyongholsonj wholegenomednarnasequencingidentifiestruncatingmutationsinrbck1inanovelmendeliandiseasewithneuromuscularandcardiacinvolvement
AT golharryan wholegenomednarnasequencingidentifiestruncatingmutationsinrbck1inanovelmendeliandiseasewithneuromuscularandcardiacinvolvement
AT hakonarsonhakon wholegenomednarnasequencingidentifiestruncatingmutationsinrbck1inanovelmendeliandiseasewithneuromuscularandcardiacinvolvement