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DICER1 hotspot mutations in non-epithelial gonadal tumours

BACKGROUND: Non-epithelial gonadal tumours largely comprise sex cord-stromal tumours (SCSTs) and germ cell tumours (GCTs). Specific somatic mutations in DICER1, a microRNA maturation pathway gene, have been identified in these tumours. We conducted a study that aimed to confirm, refine and extend th...

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Autores principales: Witkowski, L, Mattina, J, Schönberger, S, Murray, M J, Huntsman, D G, Reis-Filho, J S, McCluggage, W G, Nicholson, J C, Coleman, N, Calaminus, G, Schneider, D T, Arseneau, J, Stewart, C J R, Foulkes, W D
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Nature Publishing Group 2013
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3833222/
https://www.ncbi.nlm.nih.gov/pubmed/24136150
http://dx.doi.org/10.1038/bjc.2013.637
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author Witkowski, L
Mattina, J
Schönberger, S
Murray, M J
Huntsman, D G
Reis-Filho, J S
McCluggage, W G
Nicholson, J C
Coleman, N
Calaminus, G
Schneider, D T
Arseneau, J
Stewart, C J R
Foulkes, W D
author_facet Witkowski, L
Mattina, J
Schönberger, S
Murray, M J
Huntsman, D G
Reis-Filho, J S
McCluggage, W G
Nicholson, J C
Coleman, N
Calaminus, G
Schneider, D T
Arseneau, J
Stewart, C J R
Foulkes, W D
author_sort Witkowski, L
collection PubMed
description BACKGROUND: Non-epithelial gonadal tumours largely comprise sex cord-stromal tumours (SCSTs) and germ cell tumours (GCTs). Specific somatic mutations in DICER1, a microRNA maturation pathway gene, have been identified in these tumours. We conducted a study that aimed to confirm, refine and extend the previous observations. METHODS: We used Sanger sequencing to sequence the RNase IIIa and IIIb domains of DICER1 in 154 gonadal tumours from 135 females and 19 males, as well as 43 extra-gonadal GCTs from 26 females and 17 males. RESULTS: We identified heterozygous non-synonymous mutations in the RNase IIIb domain of DICER1 in 14/197 non-epithelial tumours (7.1%). Mutations were found in 9/28 SCSTs (32%), 5/118 gonadal GCTs (4.2%), 0/43 extra-gonadal GCTs and 0/8 miscellaneous tumours. The 14 mutations affected only five residues: E1705, D1709, E1788, D1810 and E1813. In all five patients where matched and constitutional DNA was available, the mutations were only somatic. There were no mutations found in the RNase IIIa domain. CONCLUSION: More than half (8/15) of Sertoli–Leydig cell tumours (SLCTs) harbour DICER1 mutations in the RNase IIIb domain, while mutations are rarely found in GCTs. Genetic alterations in SLCTs may aid in classification and provide new approaches to therapy.
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spelling pubmed-38332222014-11-12 DICER1 hotspot mutations in non-epithelial gonadal tumours Witkowski, L Mattina, J Schönberger, S Murray, M J Huntsman, D G Reis-Filho, J S McCluggage, W G Nicholson, J C Coleman, N Calaminus, G Schneider, D T Arseneau, J Stewart, C J R Foulkes, W D Br J Cancer Genetics and Genomics BACKGROUND: Non-epithelial gonadal tumours largely comprise sex cord-stromal tumours (SCSTs) and germ cell tumours (GCTs). Specific somatic mutations in DICER1, a microRNA maturation pathway gene, have been identified in these tumours. We conducted a study that aimed to confirm, refine and extend the previous observations. METHODS: We used Sanger sequencing to sequence the RNase IIIa and IIIb domains of DICER1 in 154 gonadal tumours from 135 females and 19 males, as well as 43 extra-gonadal GCTs from 26 females and 17 males. RESULTS: We identified heterozygous non-synonymous mutations in the RNase IIIb domain of DICER1 in 14/197 non-epithelial tumours (7.1%). Mutations were found in 9/28 SCSTs (32%), 5/118 gonadal GCTs (4.2%), 0/43 extra-gonadal GCTs and 0/8 miscellaneous tumours. The 14 mutations affected only five residues: E1705, D1709, E1788, D1810 and E1813. In all five patients where matched and constitutional DNA was available, the mutations were only somatic. There were no mutations found in the RNase IIIa domain. CONCLUSION: More than half (8/15) of Sertoli–Leydig cell tumours (SLCTs) harbour DICER1 mutations in the RNase IIIb domain, while mutations are rarely found in GCTs. Genetic alterations in SLCTs may aid in classification and provide new approaches to therapy. Nature Publishing Group 2013-11-12 2013-10-17 /pmc/articles/PMC3833222/ /pubmed/24136150 http://dx.doi.org/10.1038/bjc.2013.637 Text en Copyright © 2013 Cancer Research UK http://creativecommons.org/licenses/by-nc-sa/3.0/ From twelve months after its original publication, this work is licensed under the Creative Commons Attribution-NonCommercial-Share Alike 3.0 Unported License. To view a copy of this license, visit http://creativecommons.org/licenses/by-nc-sa/3.0/
spellingShingle Genetics and Genomics
Witkowski, L
Mattina, J
Schönberger, S
Murray, M J
Huntsman, D G
Reis-Filho, J S
McCluggage, W G
Nicholson, J C
Coleman, N
Calaminus, G
Schneider, D T
Arseneau, J
Stewart, C J R
Foulkes, W D
DICER1 hotspot mutations in non-epithelial gonadal tumours
title DICER1 hotspot mutations in non-epithelial gonadal tumours
title_full DICER1 hotspot mutations in non-epithelial gonadal tumours
title_fullStr DICER1 hotspot mutations in non-epithelial gonadal tumours
title_full_unstemmed DICER1 hotspot mutations in non-epithelial gonadal tumours
title_short DICER1 hotspot mutations in non-epithelial gonadal tumours
title_sort dicer1 hotspot mutations in non-epithelial gonadal tumours
topic Genetics and Genomics
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3833222/
https://www.ncbi.nlm.nih.gov/pubmed/24136150
http://dx.doi.org/10.1038/bjc.2013.637
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