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The Oncogenic Roles of DICER1 RNase IIIb Domain Mutations in Ovarian Sertoli-Leydig Cell Tumors()()

DICER1, an endoribonuclease required for microRNA (miRNA) biogenesis, is essential for embryogenesis and the development of many organs including ovaries. We have recently identified somatic hotspot mutations in RNase IIIb domain of DICER1 in half of ovarian Sertoli-Leydig cell tumors, a rare class...

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Autores principales: Wang, Yemin, Chen, Jiamin, Yang, Winnie, Mo, Fan, Senz, Janine, Yap, Damian, Anglesio, Michael S., Gilks, Blake, Morin, Gregg B., Huntsman, David G.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Neoplasia Press 2015
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4674484/
https://www.ncbi.nlm.nih.gov/pubmed/26408257
http://dx.doi.org/10.1016/j.neo.2015.08.003
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author Wang, Yemin
Chen, Jiamin
Yang, Winnie
Mo, Fan
Senz, Janine
Yap, Damian
Anglesio, Michael S.
Gilks, Blake
Morin, Gregg B.
Huntsman, David G.
author_facet Wang, Yemin
Chen, Jiamin
Yang, Winnie
Mo, Fan
Senz, Janine
Yap, Damian
Anglesio, Michael S.
Gilks, Blake
Morin, Gregg B.
Huntsman, David G.
author_sort Wang, Yemin
collection PubMed
description DICER1, an endoribonuclease required for microRNA (miRNA) biogenesis, is essential for embryogenesis and the development of many organs including ovaries. We have recently identified somatic hotspot mutations in RNase IIIb domain of DICER1 in half of ovarian Sertoli-Leydig cell tumors, a rare class of sex-cord stromal cell tumors in young women. These hotspot mutations lost IIIb cleavage activity of DICER1 in vitro and failed to produce 5p-derived miRNAs in mouse Dicer1-null ES cells. However, the oncogenic potential of these hotspot DICER1 mutations has not been studied. Here, we further revealed that the global expression of 5p-derived miRNAs was dramatically reduced in ovarian Sertoli-Leydig cell tumors carrying DICER1 hotspot mutations compared with those without DICER1 hotspot mutation. The miRNA production defect was associated with the deregulation of genes controlling cell proliferation and the cell fate. Using an immortalized human granulosa cell line, SVOG3e, we determined that the D1709N-DICER1 hotspot mutation failed to produce 5p-derived miRNAs, deregulated the expression of several genes that control gonadal differentiation and cell proliferation, and promoted cell growth. Re-expression of let-7 significantly inhibited the growth of D1709N-DICER1 SVOG3e cells, accompanied by the suppression of key regulators of cell cycle control and ovarian gonad differentiation. Taken together, our data revealed that DICER1 hotspot mutations cause systemic loss of 5p-miRNAs that can both drive pseudodifferentiation of testicular elements and cause oncogenic transformation in the ovary.
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spelling pubmed-46744842015-12-30 The Oncogenic Roles of DICER1 RNase IIIb Domain Mutations in Ovarian Sertoli-Leydig Cell Tumors()() Wang, Yemin Chen, Jiamin Yang, Winnie Mo, Fan Senz, Janine Yap, Damian Anglesio, Michael S. Gilks, Blake Morin, Gregg B. Huntsman, David G. Neoplasia Article DICER1, an endoribonuclease required for microRNA (miRNA) biogenesis, is essential for embryogenesis and the development of many organs including ovaries. We have recently identified somatic hotspot mutations in RNase IIIb domain of DICER1 in half of ovarian Sertoli-Leydig cell tumors, a rare class of sex-cord stromal cell tumors in young women. These hotspot mutations lost IIIb cleavage activity of DICER1 in vitro and failed to produce 5p-derived miRNAs in mouse Dicer1-null ES cells. However, the oncogenic potential of these hotspot DICER1 mutations has not been studied. Here, we further revealed that the global expression of 5p-derived miRNAs was dramatically reduced in ovarian Sertoli-Leydig cell tumors carrying DICER1 hotspot mutations compared with those without DICER1 hotspot mutation. The miRNA production defect was associated with the deregulation of genes controlling cell proliferation and the cell fate. Using an immortalized human granulosa cell line, SVOG3e, we determined that the D1709N-DICER1 hotspot mutation failed to produce 5p-derived miRNAs, deregulated the expression of several genes that control gonadal differentiation and cell proliferation, and promoted cell growth. Re-expression of let-7 significantly inhibited the growth of D1709N-DICER1 SVOG3e cells, accompanied by the suppression of key regulators of cell cycle control and ovarian gonad differentiation. Taken together, our data revealed that DICER1 hotspot mutations cause systemic loss of 5p-miRNAs that can both drive pseudodifferentiation of testicular elements and cause oncogenic transformation in the ovary. Neoplasia Press 2015-09-27 /pmc/articles/PMC4674484/ /pubmed/26408257 http://dx.doi.org/10.1016/j.neo.2015.08.003 Text en © 2015 The Authors http://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
Wang, Yemin
Chen, Jiamin
Yang, Winnie
Mo, Fan
Senz, Janine
Yap, Damian
Anglesio, Michael S.
Gilks, Blake
Morin, Gregg B.
Huntsman, David G.
The Oncogenic Roles of DICER1 RNase IIIb Domain Mutations in Ovarian Sertoli-Leydig Cell Tumors()()
title The Oncogenic Roles of DICER1 RNase IIIb Domain Mutations in Ovarian Sertoli-Leydig Cell Tumors()()
title_full The Oncogenic Roles of DICER1 RNase IIIb Domain Mutations in Ovarian Sertoli-Leydig Cell Tumors()()
title_fullStr The Oncogenic Roles of DICER1 RNase IIIb Domain Mutations in Ovarian Sertoli-Leydig Cell Tumors()()
title_full_unstemmed The Oncogenic Roles of DICER1 RNase IIIb Domain Mutations in Ovarian Sertoli-Leydig Cell Tumors()()
title_short The Oncogenic Roles of DICER1 RNase IIIb Domain Mutations in Ovarian Sertoli-Leydig Cell Tumors()()
title_sort oncogenic roles of dicer1 rnase iiib domain mutations in ovarian sertoli-leydig cell tumors()()
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4674484/
https://www.ncbi.nlm.nih.gov/pubmed/26408257
http://dx.doi.org/10.1016/j.neo.2015.08.003
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