Cargando…

Exome Sequencing Identifies a Rare HSPG2 Variant Associated with Familial Idiopathic Scoliosis

Idiopathic scoliosis occurs in 3% of individuals and has an unknown etiology. The objective of this study was to identify rare variants that contribute to the etiology of idiopathic scoliosis by using exome sequencing in a multigenerational family with idiopathic scoliosis. Exome sequencing was comp...

Descripción completa

Detalles Bibliográficos
Autores principales: Baschal, Erin E., Wethey, Cambria I., Swindle, Kandice, Baschal, Robin M., Gowan, Katherine, Tang, Nelson L.S., Alvarado, David M., Haller, Gabe E., Dobbs, Matthew B., Taylor, Matthew R.G., Gurnett, Christina A., Jones, Kenneth L., Miller, Nancy H.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Genetics Society of America 2014
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4321025/
https://www.ncbi.nlm.nih.gov/pubmed/25504735
http://dx.doi.org/10.1534/g3.114.015669
_version_ 1782356223082889216
author Baschal, Erin E.
Wethey, Cambria I.
Swindle, Kandice
Baschal, Robin M.
Gowan, Katherine
Tang, Nelson L.S.
Alvarado, David M.
Haller, Gabe E.
Dobbs, Matthew B.
Taylor, Matthew R.G.
Gurnett, Christina A.
Jones, Kenneth L.
Miller, Nancy H.
author_facet Baschal, Erin E.
Wethey, Cambria I.
Swindle, Kandice
Baschal, Robin M.
Gowan, Katherine
Tang, Nelson L.S.
Alvarado, David M.
Haller, Gabe E.
Dobbs, Matthew B.
Taylor, Matthew R.G.
Gurnett, Christina A.
Jones, Kenneth L.
Miller, Nancy H.
author_sort Baschal, Erin E.
collection PubMed
description Idiopathic scoliosis occurs in 3% of individuals and has an unknown etiology. The objective of this study was to identify rare variants that contribute to the etiology of idiopathic scoliosis by using exome sequencing in a multigenerational family with idiopathic scoliosis. Exome sequencing was completed for three members of this multigenerational family with idiopathic scoliosis, resulting in the identification of a variant in the HSPG2 gene as a potential contributor to the phenotype. The HSPG2 gene was sequenced in a separate cohort of 100 unrelated individuals affected with idiopathic scoliosis and also was examined in an independent idiopathic scoliosis population. The exome sequencing and subsequent bioinformatics filtering resulted in 16 potentially damaging and rare coding variants. One of these variants, p.Asn786Ser, is located in the HSPG2 gene. The variant p.Asn786Ser also is overrepresented in a larger cohort of idiopathic scoliosis cases compared with a control population (P = 0.024). Furthermore, we identified additional rare HSPG2 variants that are predicted to be damaging in two independent cohorts of individuals with idiopathic scoliosis. The HSPG2 gene encodes for a ubiquitous multifunctional protein within the extracellular matrix in which loss of function mutation are known to result in a musculoskeletal phenotype in both mouse and humans. Based on these results, we conclude that rare variants in the HSPG2 gene potentially contribute to the idiopathic scoliosis phenotype in a subset of patients with idiopathic scoliosis. Further studies must be completed to confirm the effect of the HSPG2 gene on the idiopathic scoliosis phenotype.
format Online
Article
Text
id pubmed-4321025
institution National Center for Biotechnology Information
language English
publishDate 2014
publisher Genetics Society of America
record_format MEDLINE/PubMed
spelling pubmed-43210252015-02-18 Exome Sequencing Identifies a Rare HSPG2 Variant Associated with Familial Idiopathic Scoliosis Baschal, Erin E. Wethey, Cambria I. Swindle, Kandice Baschal, Robin M. Gowan, Katherine Tang, Nelson L.S. Alvarado, David M. Haller, Gabe E. Dobbs, Matthew B. Taylor, Matthew R.G. Gurnett, Christina A. Jones, Kenneth L. Miller, Nancy H. G3 (Bethesda) Investigations Idiopathic scoliosis occurs in 3% of individuals and has an unknown etiology. The objective of this study was to identify rare variants that contribute to the etiology of idiopathic scoliosis by using exome sequencing in a multigenerational family with idiopathic scoliosis. Exome sequencing was completed for three members of this multigenerational family with idiopathic scoliosis, resulting in the identification of a variant in the HSPG2 gene as a potential contributor to the phenotype. The HSPG2 gene was sequenced in a separate cohort of 100 unrelated individuals affected with idiopathic scoliosis and also was examined in an independent idiopathic scoliosis population. The exome sequencing and subsequent bioinformatics filtering resulted in 16 potentially damaging and rare coding variants. One of these variants, p.Asn786Ser, is located in the HSPG2 gene. The variant p.Asn786Ser also is overrepresented in a larger cohort of idiopathic scoliosis cases compared with a control population (P = 0.024). Furthermore, we identified additional rare HSPG2 variants that are predicted to be damaging in two independent cohorts of individuals with idiopathic scoliosis. The HSPG2 gene encodes for a ubiquitous multifunctional protein within the extracellular matrix in which loss of function mutation are known to result in a musculoskeletal phenotype in both mouse and humans. Based on these results, we conclude that rare variants in the HSPG2 gene potentially contribute to the idiopathic scoliosis phenotype in a subset of patients with idiopathic scoliosis. Further studies must be completed to confirm the effect of the HSPG2 gene on the idiopathic scoliosis phenotype. Genetics Society of America 2014-12-12 /pmc/articles/PMC4321025/ /pubmed/25504735 http://dx.doi.org/10.1534/g3.114.015669 Text en Copyright © 2015 Baschal et al. http://creativecommons.org/licenses/by/3.0/ This is an open-access article distributed under the terms of the Creative Commons Attribution Unported License (http://creativecommons.org/licenses/by/3.0/), which permits unrestricted use, distribution, and reproduction in any medium, provided the original work is properly cited.
spellingShingle Investigations
Baschal, Erin E.
Wethey, Cambria I.
Swindle, Kandice
Baschal, Robin M.
Gowan, Katherine
Tang, Nelson L.S.
Alvarado, David M.
Haller, Gabe E.
Dobbs, Matthew B.
Taylor, Matthew R.G.
Gurnett, Christina A.
Jones, Kenneth L.
Miller, Nancy H.
Exome Sequencing Identifies a Rare HSPG2 Variant Associated with Familial Idiopathic Scoliosis
title Exome Sequencing Identifies a Rare HSPG2 Variant Associated with Familial Idiopathic Scoliosis
title_full Exome Sequencing Identifies a Rare HSPG2 Variant Associated with Familial Idiopathic Scoliosis
title_fullStr Exome Sequencing Identifies a Rare HSPG2 Variant Associated with Familial Idiopathic Scoliosis
title_full_unstemmed Exome Sequencing Identifies a Rare HSPG2 Variant Associated with Familial Idiopathic Scoliosis
title_short Exome Sequencing Identifies a Rare HSPG2 Variant Associated with Familial Idiopathic Scoliosis
title_sort exome sequencing identifies a rare hspg2 variant associated with familial idiopathic scoliosis
topic Investigations
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4321025/
https://www.ncbi.nlm.nih.gov/pubmed/25504735
http://dx.doi.org/10.1534/g3.114.015669
work_keys_str_mv AT baschalerine exomesequencingidentifiesararehspg2variantassociatedwithfamilialidiopathicscoliosis
AT wetheycambriai exomesequencingidentifiesararehspg2variantassociatedwithfamilialidiopathicscoliosis
AT swindlekandice exomesequencingidentifiesararehspg2variantassociatedwithfamilialidiopathicscoliosis
AT baschalrobinm exomesequencingidentifiesararehspg2variantassociatedwithfamilialidiopathicscoliosis
AT gowankatherine exomesequencingidentifiesararehspg2variantassociatedwithfamilialidiopathicscoliosis
AT tangnelsonls exomesequencingidentifiesararehspg2variantassociatedwithfamilialidiopathicscoliosis
AT alvaradodavidm exomesequencingidentifiesararehspg2variantassociatedwithfamilialidiopathicscoliosis
AT hallergabee exomesequencingidentifiesararehspg2variantassociatedwithfamilialidiopathicscoliosis
AT dobbsmatthewb exomesequencingidentifiesararehspg2variantassociatedwithfamilialidiopathicscoliosis
AT taylormatthewrg exomesequencingidentifiesararehspg2variantassociatedwithfamilialidiopathicscoliosis
AT gurnettchristinaa exomesequencingidentifiesararehspg2variantassociatedwithfamilialidiopathicscoliosis
AT joneskennethl exomesequencingidentifiesararehspg2variantassociatedwithfamilialidiopathicscoliosis
AT millernancyh exomesequencingidentifiesararehspg2variantassociatedwithfamilialidiopathicscoliosis