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Germline predisposition to pediatric Ewing sarcoma is characterized by inherited pathogenic variants in DNA damage repair genes

More knowledge is needed regarding germline predisposition to Ewing sarcoma to inform biological investigation and clinical practice. Here, we evaluated the enrichment of pathogenic germline variants in Ewing sarcoma relative to other pediatric sarcoma subtypes, as well as patterns of inheritance of...

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Autores principales: Gillani, Riaz, Camp, Sabrina Y., Han, Seunghun, Jones, Jill K., Chu, Hoyin, O’Brien, Schuyler, Young, Erin L., Hayes, Lucy, Mitchell, Gareth, Fowler, Trent, Gusev, Alexander, Kamihara, Junne, Janeway, Katherine A., Schiffman, Joshua D., Crompton, Brian D., AlDubayan, Saud H., Van Allen, Eliezer M.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Elsevier 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9247831/
https://www.ncbi.nlm.nih.gov/pubmed/35512711
http://dx.doi.org/10.1016/j.ajhg.2022.04.007
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author Gillani, Riaz
Camp, Sabrina Y.
Han, Seunghun
Jones, Jill K.
Chu, Hoyin
O’Brien, Schuyler
Young, Erin L.
Hayes, Lucy
Mitchell, Gareth
Fowler, Trent
Gusev, Alexander
Kamihara, Junne
Janeway, Katherine A.
Schiffman, Joshua D.
Crompton, Brian D.
AlDubayan, Saud H.
Van Allen, Eliezer M.
author_facet Gillani, Riaz
Camp, Sabrina Y.
Han, Seunghun
Jones, Jill K.
Chu, Hoyin
O’Brien, Schuyler
Young, Erin L.
Hayes, Lucy
Mitchell, Gareth
Fowler, Trent
Gusev, Alexander
Kamihara, Junne
Janeway, Katherine A.
Schiffman, Joshua D.
Crompton, Brian D.
AlDubayan, Saud H.
Van Allen, Eliezer M.
author_sort Gillani, Riaz
collection PubMed
description More knowledge is needed regarding germline predisposition to Ewing sarcoma to inform biological investigation and clinical practice. Here, we evaluated the enrichment of pathogenic germline variants in Ewing sarcoma relative to other pediatric sarcoma subtypes, as well as patterns of inheritance of these variants. We carried out European-focused and pan-ancestry case-control analyses to screen for enrichment of pathogenic germline variants in 141 established cancer predisposition genes in 1,147 individuals with pediatric sarcoma diagnoses (226 Ewing sarcoma, 438 osteosarcoma, 180 rhabdomyosarcoma, and 303 other sarcoma) relative to identically processed cancer-free control individuals. Findings in Ewing sarcoma were validated with an additional cohort of 430 individuals, and a subset of 301 Ewing sarcoma parent-proband trios was analyzed for inheritance patterns of identified pathogenic variants. A distinct pattern of pathogenic germline variants was seen in Ewing sarcoma relative to other sarcoma subtypes. FANCC was the only gene with an enrichment signal for heterozygous pathogenic variants in the European Ewing sarcoma discovery cohort (three individuals, OR 12.6, 95% CI 3.0–43.2, p = 0.003, FDR = 0.40). This enrichment in FANCC heterozygous pathogenic variants was again observed in the European Ewing sarcoma validation cohort (three individuals, OR 7.0, 95% CI 1.7–23.6, p = 0.014), representing a broader importance of genes involved in DNA damage repair, which were also nominally enriched in individuals with Ewing sarcoma. Pathogenic variants in DNA damage repair genes were acquired through autosomal inheritance. Our study provides new insight into germline risk factors contributing to Ewing sarcoma pathogenesis.
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spelling pubmed-92478312022-07-02 Germline predisposition to pediatric Ewing sarcoma is characterized by inherited pathogenic variants in DNA damage repair genes Gillani, Riaz Camp, Sabrina Y. Han, Seunghun Jones, Jill K. Chu, Hoyin O’Brien, Schuyler Young, Erin L. Hayes, Lucy Mitchell, Gareth Fowler, Trent Gusev, Alexander Kamihara, Junne Janeway, Katherine A. Schiffman, Joshua D. Crompton, Brian D. AlDubayan, Saud H. Van Allen, Eliezer M. Am J Hum Genet Article More knowledge is needed regarding germline predisposition to Ewing sarcoma to inform biological investigation and clinical practice. Here, we evaluated the enrichment of pathogenic germline variants in Ewing sarcoma relative to other pediatric sarcoma subtypes, as well as patterns of inheritance of these variants. We carried out European-focused and pan-ancestry case-control analyses to screen for enrichment of pathogenic germline variants in 141 established cancer predisposition genes in 1,147 individuals with pediatric sarcoma diagnoses (226 Ewing sarcoma, 438 osteosarcoma, 180 rhabdomyosarcoma, and 303 other sarcoma) relative to identically processed cancer-free control individuals. Findings in Ewing sarcoma were validated with an additional cohort of 430 individuals, and a subset of 301 Ewing sarcoma parent-proband trios was analyzed for inheritance patterns of identified pathogenic variants. A distinct pattern of pathogenic germline variants was seen in Ewing sarcoma relative to other sarcoma subtypes. FANCC was the only gene with an enrichment signal for heterozygous pathogenic variants in the European Ewing sarcoma discovery cohort (three individuals, OR 12.6, 95% CI 3.0–43.2, p = 0.003, FDR = 0.40). This enrichment in FANCC heterozygous pathogenic variants was again observed in the European Ewing sarcoma validation cohort (three individuals, OR 7.0, 95% CI 1.7–23.6, p = 0.014), representing a broader importance of genes involved in DNA damage repair, which were also nominally enriched in individuals with Ewing sarcoma. Pathogenic variants in DNA damage repair genes were acquired through autosomal inheritance. Our study provides new insight into germline risk factors contributing to Ewing sarcoma pathogenesis. Elsevier 2022-06-02 2022-05-04 /pmc/articles/PMC9247831/ /pubmed/35512711 http://dx.doi.org/10.1016/j.ajhg.2022.04.007 Text en © 2022 The Author(s) https://creativecommons.org/licenses/by-nc-nd/4.0/This is an open access article under the CC BY-NC-ND license (http://creativecommons.org/licenses/by-nc-nd/4.0/).
spellingShingle Article
Gillani, Riaz
Camp, Sabrina Y.
Han, Seunghun
Jones, Jill K.
Chu, Hoyin
O’Brien, Schuyler
Young, Erin L.
Hayes, Lucy
Mitchell, Gareth
Fowler, Trent
Gusev, Alexander
Kamihara, Junne
Janeway, Katherine A.
Schiffman, Joshua D.
Crompton, Brian D.
AlDubayan, Saud H.
Van Allen, Eliezer M.
Germline predisposition to pediatric Ewing sarcoma is characterized by inherited pathogenic variants in DNA damage repair genes
title Germline predisposition to pediatric Ewing sarcoma is characterized by inherited pathogenic variants in DNA damage repair genes
title_full Germline predisposition to pediatric Ewing sarcoma is characterized by inherited pathogenic variants in DNA damage repair genes
title_fullStr Germline predisposition to pediatric Ewing sarcoma is characterized by inherited pathogenic variants in DNA damage repair genes
title_full_unstemmed Germline predisposition to pediatric Ewing sarcoma is characterized by inherited pathogenic variants in DNA damage repair genes
title_short Germline predisposition to pediatric Ewing sarcoma is characterized by inherited pathogenic variants in DNA damage repair genes
title_sort germline predisposition to pediatric ewing sarcoma is characterized by inherited pathogenic variants in dna damage repair genes
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9247831/
https://www.ncbi.nlm.nih.gov/pubmed/35512711
http://dx.doi.org/10.1016/j.ajhg.2022.04.007
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