Mutation of <i>FOXL2</i> in Granulosa-Cell Tumors of the Ovary

Sohrab P. Shah(Genomics (United Kingdom)), Martin Köbel(University of British Columbia), Janine Senz(Genomics (United Kingdom)), Ryan D. Morin, Blaise Clarke(University of Toronto), Kimberly C. Wiegand(Genomics (United Kingdom)), Gillian Leung(Genomics (United Kingdom)), Abdalnasser Zayed(Genomics (United Kingdom)), Erika Mehl(University of British Columbia), Steve E. Kalloger(Genomics (United Kingdom)), Mark Sun(Genomics (United Kingdom)), Ryan Giuliany(Genomics (United Kingdom)), Erika Yorida(Genomics (United Kingdom)), Steven J.M. Jones, Richard Varhol, Kenneth D. Swenerton, Dianne Miller(Vancouver General Hospital), Philip B. Clement(Vancouver General Hospital), Colleen Crane(University of Ottawa), Jason Madore(Centre Hospitalier de l’Université de Montréal), Diane Provencher(Centre Hospitalier de l’Université de Montréal), Peter C. K. Leung(University of British Columbia), Anna DeFazio(Millennium Institute), Jaswinder Khattra(Molecular Oncology (United States)), Gulisa Turashvili(Molecular Oncology (United States)), Yongjun Zhao, Thomas Zeng, J. N. Mark Glover(University of Alberta), Barbara C. Vanderhyden(University of Ottawa), Chengquan Zhao(University of Pittsburgh Medical Center), Christine Parkinson(Cancer Research UK), Mercedes Jimenez‐Liñan(Cancer Research UK), David D.L. Bowtell(Peter MacCallum Cancer Centre), Anne‐Marie Mes‐Masson(BC Cancer Agency), James D. Brenton(Cancer Research UK), Samuel Aparício(BC Cancer Agency), Niki Boyd(Genomics (United Kingdom)), Martin Hirst, C. Blake Gilks(Vancouver General Hospital), Marco A. Marra, David G. Huntsman(Vancouver General Hospital)
New England Journal of Medicine
June 10, 2009
Cited by 770Open Access
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Abstract

BACKGROUND: Granulosa-cell tumors (GCTs) are the most common type of malignant ovarian sex cord-stromal tumor (SCST). The pathogenesis of these tumors is unknown. Moreover, their histopathological diagnosis can be challenging, and there is no curative treatment beyond surgery. METHODS: We analyzed four adult-type GCTs using whole-transcriptome paired-end RNA sequencing. We identified putative GCT-specific mutations that were present in at least three of these samples but were absent from the transcriptomes of 11 epithelial ovarian tumors, published human genomes, and databases of single-nucleotide polymorphisms. We confirmed these variants by direct sequencing of complementary DNA and genomic DNA. We then analyzed additional tumors and matched normal genomic DNA, using a combination of direct sequencing, analyses of restriction-fragment-length polymorphisms, and TaqMan assays. RESULTS: All four index GCTs had a missense point mutation, 402C-->G (C134W), in FOXL2, a gene encoding a transcription factor known to be critical for granulosa-cell development. The FOXL2 mutation was present in 86 of 89 additional adult-type GCTs (97%), in 3 of 14 thecomas (21%), and in 1 of 10 juvenile-type GCTs (10%). The mutation was absent in 49 SCSTs of other types and in 329 unrelated ovarian or breast tumors. CONCLUSIONS: Whole-transcriptome sequencing of four GCTs identified a single, recurrent somatic mutation (402C-->G) in FOXL2 that was present in almost all morphologically identified adult-type GCTs. Mutant FOXL2 is a potential driver in the pathogenesis of adult-type GCTs.


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