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Whole-genome sequencing of spermatocytic tumors provides insights into the mutational processes operating in the male germline

Adult male germline stem cells (spermatogonia) proliferate by mitosis and, after puberty, generate spermatocytes that undertake meiosis to produce haploid spermatozoa. Germ cells are under evolutionary constraint to curtail mutations and maintain genome integrity. Despite constant turnover, spermato...

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Autores principales: Giannoulatou, Eleni, Maher, Geoffrey J., Ding, Zhihao, Gillis, Ad J. M., Dorssers, Lambert C. J., Hoischen, Alexander, Rajpert-De Meyts, Ewa, McVean, Gilean, Wilkie, Andrew O. M., Looijenga, Leendert H. J., Goriely, Anne
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2017
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5439955/
https://www.ncbi.nlm.nih.gov/pubmed/28542371
http://dx.doi.org/10.1371/journal.pone.0178169
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author Giannoulatou, Eleni
Maher, Geoffrey J.
Ding, Zhihao
Gillis, Ad J. M.
Dorssers, Lambert C. J.
Hoischen, Alexander
Rajpert-De Meyts, Ewa
McVean, Gilean
Wilkie, Andrew O. M.
Looijenga, Leendert H. J.
Goriely, Anne
author_facet Giannoulatou, Eleni
Maher, Geoffrey J.
Ding, Zhihao
Gillis, Ad J. M.
Dorssers, Lambert C. J.
Hoischen, Alexander
Rajpert-De Meyts, Ewa
McVean, Gilean
Wilkie, Andrew O. M.
Looijenga, Leendert H. J.
Goriely, Anne
author_sort Giannoulatou, Eleni
collection PubMed
description Adult male germline stem cells (spermatogonia) proliferate by mitosis and, after puberty, generate spermatocytes that undertake meiosis to produce haploid spermatozoa. Germ cells are under evolutionary constraint to curtail mutations and maintain genome integrity. Despite constant turnover, spermatogonia very rarely form tumors, so-called spermatocytic tumors (SpT). In line with the previous identification of FGFR3 and HRAS selfish mutations in a subset of cases, candidate gene screening of 29 SpTs identified an oncogenic NRAS mutation in two cases. To gain insights in the etiology of SpT and into properties of the male germline, we performed whole-genome sequencing of five tumors (4/5 with matched normal tissue). The acquired single nucleotide variant load was extremely low (~0.2 per Mb), with an average of 6 (2–9) non-synonymous variants per tumor, none of which is likely to be oncogenic. The observed mutational signature of SpTs is strikingly similar to that of germline de novo mutations, mostly involving C>T transitions with a significant enrichment in the ACG trinucleotide context. The tumors exhibited extensive aneuploidy (50–99 autosomes/tumor) involving whole-chromosomes, with recurrent gains of chr9 and chr20 and loss of chr7, suggesting that aneuploidy itself represents the initiating oncogenic event. We propose that SpT etiology recapitulates the unique properties of male germ cells; because of evolutionary constraints to maintain low point mutation rate, rare tumorigenic driver events are caused by a combination of gene imbalance mediated via whole-chromosome aneuploidy. Finally, we propose a general framework of male germ cell tumor pathology that accounts for their mutational landscape, timing and cellular origin.
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spelling pubmed-54399552017-06-06 Whole-genome sequencing of spermatocytic tumors provides insights into the mutational processes operating in the male germline Giannoulatou, Eleni Maher, Geoffrey J. Ding, Zhihao Gillis, Ad J. M. Dorssers, Lambert C. J. Hoischen, Alexander Rajpert-De Meyts, Ewa McVean, Gilean Wilkie, Andrew O. M. Looijenga, Leendert H. J. Goriely, Anne PLoS One Research Article Adult male germline stem cells (spermatogonia) proliferate by mitosis and, after puberty, generate spermatocytes that undertake meiosis to produce haploid spermatozoa. Germ cells are under evolutionary constraint to curtail mutations and maintain genome integrity. Despite constant turnover, spermatogonia very rarely form tumors, so-called spermatocytic tumors (SpT). In line with the previous identification of FGFR3 and HRAS selfish mutations in a subset of cases, candidate gene screening of 29 SpTs identified an oncogenic NRAS mutation in two cases. To gain insights in the etiology of SpT and into properties of the male germline, we performed whole-genome sequencing of five tumors (4/5 with matched normal tissue). The acquired single nucleotide variant load was extremely low (~0.2 per Mb), with an average of 6 (2–9) non-synonymous variants per tumor, none of which is likely to be oncogenic. The observed mutational signature of SpTs is strikingly similar to that of germline de novo mutations, mostly involving C>T transitions with a significant enrichment in the ACG trinucleotide context. The tumors exhibited extensive aneuploidy (50–99 autosomes/tumor) involving whole-chromosomes, with recurrent gains of chr9 and chr20 and loss of chr7, suggesting that aneuploidy itself represents the initiating oncogenic event. We propose that SpT etiology recapitulates the unique properties of male germ cells; because of evolutionary constraints to maintain low point mutation rate, rare tumorigenic driver events are caused by a combination of gene imbalance mediated via whole-chromosome aneuploidy. Finally, we propose a general framework of male germ cell tumor pathology that accounts for their mutational landscape, timing and cellular origin. Public Library of Science 2017-05-22 /pmc/articles/PMC5439955/ /pubmed/28542371 http://dx.doi.org/10.1371/journal.pone.0178169 Text en © 2017 Giannoulatou et al http://creativecommons.org/licenses/by/4.0/ This is an open access article distributed under the terms of the Creative Commons Attribution License (http://creativecommons.org/licenses/by/4.0/) , which permits unrestricted use, distribution, and reproduction in any medium, provided the original author and source are credited.
spellingShingle Research Article
Giannoulatou, Eleni
Maher, Geoffrey J.
Ding, Zhihao
Gillis, Ad J. M.
Dorssers, Lambert C. J.
Hoischen, Alexander
Rajpert-De Meyts, Ewa
McVean, Gilean
Wilkie, Andrew O. M.
Looijenga, Leendert H. J.
Goriely, Anne
Whole-genome sequencing of spermatocytic tumors provides insights into the mutational processes operating in the male germline
title Whole-genome sequencing of spermatocytic tumors provides insights into the mutational processes operating in the male germline
title_full Whole-genome sequencing of spermatocytic tumors provides insights into the mutational processes operating in the male germline
title_fullStr Whole-genome sequencing of spermatocytic tumors provides insights into the mutational processes operating in the male germline
title_full_unstemmed Whole-genome sequencing of spermatocytic tumors provides insights into the mutational processes operating in the male germline
title_short Whole-genome sequencing of spermatocytic tumors provides insights into the mutational processes operating in the male germline
title_sort whole-genome sequencing of spermatocytic tumors provides insights into the mutational processes operating in the male germline
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5439955/
https://www.ncbi.nlm.nih.gov/pubmed/28542371
http://dx.doi.org/10.1371/journal.pone.0178169
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