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Rare Germline Variants in Chordoma-Related Genes and Chordoma Susceptibility

SIMPLE SUMMARY: Chordoma is an extremely rare bone cancer that has not been fully characterized and few risk factors have been identified, highlighting the need for improving our understanding of the disease biology. Our study aims to identify chordoma susceptibility genes by investigating 265 genes...

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Autores principales: Yepes, Sally, Shah, Nirav N., Bai, Jiwei, Koka, Hela, Li, Chuzhong, Gui, Songbai, McMaster, Mary Lou, Xiao, Yanzi, Jones, Kristine, Wang, Mingyi, Vogt, Aurelie, Zhu, Bin, Hutchinson, Amy, Yeager, Meredith, Hicks, Belynda, Carter, Brian, Freedman, Neal D., Beane-Freeman, Laura, Chanock, Stephen J., Zhang, Yazhuo, Parry, Dilys M., Yang, Xiaohong R., Goldstein, Alisa M.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2021
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8197919/
https://www.ncbi.nlm.nih.gov/pubmed/34070849
http://dx.doi.org/10.3390/cancers13112704
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author Yepes, Sally
Shah, Nirav N.
Bai, Jiwei
Koka, Hela
Li, Chuzhong
Gui, Songbai
McMaster, Mary Lou
Xiao, Yanzi
Jones, Kristine
Wang, Mingyi
Vogt, Aurelie
Zhu, Bin
Zhu, Bin
Hutchinson, Amy
Yeager, Meredith
Hicks, Belynda
Carter, Brian
Freedman, Neal D.
Beane-Freeman, Laura
Chanock, Stephen J.
Zhang, Yazhuo
Parry, Dilys M.
Yang, Xiaohong R.
Goldstein, Alisa M.
author_facet Yepes, Sally
Shah, Nirav N.
Bai, Jiwei
Koka, Hela
Li, Chuzhong
Gui, Songbai
McMaster, Mary Lou
Xiao, Yanzi
Jones, Kristine
Wang, Mingyi
Vogt, Aurelie
Zhu, Bin
Zhu, Bin
Hutchinson, Amy
Yeager, Meredith
Hicks, Belynda
Carter, Brian
Freedman, Neal D.
Beane-Freeman, Laura
Chanock, Stephen J.
Zhang, Yazhuo
Parry, Dilys M.
Yang, Xiaohong R.
Goldstein, Alisa M.
author_sort Yepes, Sally
collection PubMed
description SIMPLE SUMMARY: Chordoma is an extremely rare bone cancer that has not been fully characterized and few risk factors have been identified, highlighting the need for improving our understanding of the disease biology. Our study aims to identify chordoma susceptibility genes by investigating 265 genes involved in chordoma-related signaling pathways and other biological processes on germline DNA of 138 chordoma patients of European ancestry compared to internal control datasets and general population databases. Results were intersected with whole genome sequencing data from 80 skull-base chordoma patients of Chinese ancestry. Several rare loss-of-function and predicted deleterious missense variants were enriched in chordoma cases in both datasets, suggesting a complex model of pathways potentially involved in chordoma development and susceptibility, warranting further investigation in larger studies. ABSTRACT: Background: Chordoma is a rare bone cancer with an unknown etiology. TBXT is the only chordoma susceptibility gene identified to date; germline single nucleotide variants and copy number variants in TBXT have been associated with chordoma susceptibility in familial and sporadic chordoma. However, the genetic susceptibility of chordoma remains largely unknown. In this study, we investigated rare germline genetic variants in genes involved in TBXT/chordoma-related signaling pathways and other biological processes in chordoma patients from North America and China. Methods: We identified variants that were very rare in general population and internal control datasets and showed evidence for pathogenicity in 265 genes in a whole exome sequencing (WES) dataset of 138 chordoma patients of European ancestry and in a whole genome sequencing (WGS) dataset of 80 Chinese patients with skull base chordoma. Results: Rare and likely pathogenic variants were identified in 32 of 138 European ancestry patients (23%), including genes that are part of notochord development, PI3K/AKT/mTOR, Sonic Hedgehog, SWI/SNF complex and mesoderm development pathways. Rare pathogenic variants in COL2A1, EXT1, PDK1, LRP2, TBXT and TSC2, among others, were also observed in Chinese patients. Conclusion: We identified several rare loss-of-function and predicted deleterious missense variants in germline DNA from patients with chordoma, which may influence chordoma predisposition and reflect a complex susceptibility, warranting further investigation in large studies.
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spelling pubmed-81979192021-06-14 Rare Germline Variants in Chordoma-Related Genes and Chordoma Susceptibility Yepes, Sally Shah, Nirav N. Bai, Jiwei Koka, Hela Li, Chuzhong Gui, Songbai McMaster, Mary Lou Xiao, Yanzi Jones, Kristine Wang, Mingyi Vogt, Aurelie Zhu, Bin Zhu, Bin Hutchinson, Amy Yeager, Meredith Hicks, Belynda Carter, Brian Freedman, Neal D. Beane-Freeman, Laura Chanock, Stephen J. Zhang, Yazhuo Parry, Dilys M. Yang, Xiaohong R. Goldstein, Alisa M. Cancers (Basel) Article SIMPLE SUMMARY: Chordoma is an extremely rare bone cancer that has not been fully characterized and few risk factors have been identified, highlighting the need for improving our understanding of the disease biology. Our study aims to identify chordoma susceptibility genes by investigating 265 genes involved in chordoma-related signaling pathways and other biological processes on germline DNA of 138 chordoma patients of European ancestry compared to internal control datasets and general population databases. Results were intersected with whole genome sequencing data from 80 skull-base chordoma patients of Chinese ancestry. Several rare loss-of-function and predicted deleterious missense variants were enriched in chordoma cases in both datasets, suggesting a complex model of pathways potentially involved in chordoma development and susceptibility, warranting further investigation in larger studies. ABSTRACT: Background: Chordoma is a rare bone cancer with an unknown etiology. TBXT is the only chordoma susceptibility gene identified to date; germline single nucleotide variants and copy number variants in TBXT have been associated with chordoma susceptibility in familial and sporadic chordoma. However, the genetic susceptibility of chordoma remains largely unknown. In this study, we investigated rare germline genetic variants in genes involved in TBXT/chordoma-related signaling pathways and other biological processes in chordoma patients from North America and China. Methods: We identified variants that were very rare in general population and internal control datasets and showed evidence for pathogenicity in 265 genes in a whole exome sequencing (WES) dataset of 138 chordoma patients of European ancestry and in a whole genome sequencing (WGS) dataset of 80 Chinese patients with skull base chordoma. Results: Rare and likely pathogenic variants were identified in 32 of 138 European ancestry patients (23%), including genes that are part of notochord development, PI3K/AKT/mTOR, Sonic Hedgehog, SWI/SNF complex and mesoderm development pathways. Rare pathogenic variants in COL2A1, EXT1, PDK1, LRP2, TBXT and TSC2, among others, were also observed in Chinese patients. Conclusion: We identified several rare loss-of-function and predicted deleterious missense variants in germline DNA from patients with chordoma, which may influence chordoma predisposition and reflect a complex susceptibility, warranting further investigation in large studies. MDPI 2021-05-30 /pmc/articles/PMC8197919/ /pubmed/34070849 http://dx.doi.org/10.3390/cancers13112704 Text en © 2021 by the authors. https://creativecommons.org/licenses/by/4.0/Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (https://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Yepes, Sally
Shah, Nirav N.
Bai, Jiwei
Koka, Hela
Li, Chuzhong
Gui, Songbai
McMaster, Mary Lou
Xiao, Yanzi
Jones, Kristine
Wang, Mingyi
Vogt, Aurelie
Zhu, Bin
Zhu, Bin
Hutchinson, Amy
Yeager, Meredith
Hicks, Belynda
Carter, Brian
Freedman, Neal D.
Beane-Freeman, Laura
Chanock, Stephen J.
Zhang, Yazhuo
Parry, Dilys M.
Yang, Xiaohong R.
Goldstein, Alisa M.
Rare Germline Variants in Chordoma-Related Genes and Chordoma Susceptibility
title Rare Germline Variants in Chordoma-Related Genes and Chordoma Susceptibility
title_full Rare Germline Variants in Chordoma-Related Genes and Chordoma Susceptibility
title_fullStr Rare Germline Variants in Chordoma-Related Genes and Chordoma Susceptibility
title_full_unstemmed Rare Germline Variants in Chordoma-Related Genes and Chordoma Susceptibility
title_short Rare Germline Variants in Chordoma-Related Genes and Chordoma Susceptibility
title_sort rare germline variants in chordoma-related genes and chordoma susceptibility
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8197919/
https://www.ncbi.nlm.nih.gov/pubmed/34070849
http://dx.doi.org/10.3390/cancers13112704
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