Literature DB >> 22240241

Molecular pathogenesis of granulosa cell tumors of the ovary.

Stacey Jamieson1, Peter J Fuller.   

Abstract

Granulosa cell tumors of the ovary (GCT) comprise a distinct subset of ovarian cancers that account for approximately 5% of all ovarian malignancies. They are thought to arise from normal proliferating granulosa cells of the late preovulatory follicle and exhibit many morphological and biochemical features of these cells. GCT are distinct from other ovarian carcinomas in their hormonal activity; their ability to secrete estrogen, inhibin, and Müllerian inhibiting substance accounts for some of the clinical manifestations of the disease and also provides useful tumor markers for disease surveillance. Although considered to be of low malignant potential, GCT are commonly associated with slow, indolent disease progression, and frequent yet long delays to tumor recurrence are characteristic of this disease. Unlike the more intensely investigated epithelial ovarian tumors, relatively little is known about the molecular and genetic changes that give rise to GCT. To date, many investigations have centered around pathways known to be involved in normal granulosa cell proliferation, including those activated by FSH receptor stimulation. Most recently, the finding that approximately 97% of adult GCT harbor a somatic missense mutation in the FOXL2 gene (c.402C→G; p.C134W) represents an exciting advancement in the field of GCT research. The high frequency with which the mutation occurs in adult GCT, along with its absence from juvenile GCT and other human malignancies is suggestive of an oncogenic or gain-of-function mutation and, indeed, that the mutation is pathognomonic for adult GCT. In this review, we explore the implications of this finding and the most recent work characterizing molecular pathways of potential pathogenetic significance in GCT.
Copyright © 2012 by The Endocrine Society

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Year:  2012        PMID: 22240241     DOI: 10.1210/er.2011-0014

Source DB:  PubMed          Journal:  Endocr Rev        ISSN: 0163-769X            Impact factor:   19.871


  64 in total

1.  YAP regulates cell proliferation, migration, and steroidogenesis in adult granulosa cell tumors.

Authors:  David Fu; Xiangmin Lv; Guohua Hua; Chunbo He; Jixin Dong; Subodh M Lele; David Wan-Cheng Li; Qiongli Zhai; John S Davis; Cheng Wang
Journal:  Endocr Relat Cancer       Date:  2014-03-04       Impact factor: 5.678

Review 2.  Plasticity of granulosa cells: on the crossroad of stemness and transdifferentiation potential.

Authors:  Edo Dzafic; Martin Stimpfel; Irma Virant-Klun
Journal:  J Assist Reprod Genet       Date:  2013-07-28       Impact factor: 3.412

Review 3.  Multimodality imaging and genomics of granulosa cell tumors.

Authors:  Sherif Elsherif; Matthew Bourne; Erik Soule; Chandana Lall; Priya Bhosale
Journal:  Abdom Radiol (NY)       Date:  2020-03

4.  Mutant FOXL2C134W Hijacks SMAD4 and SMAD2/3 to Drive Adult Granulosa Cell Tumors.

Authors:  Stine E Weis-Banke; Mads Lerdrup; Daniela Kleine-Kohlbrecher; Faizaan Mohammad; Simone Sidoli; Ole N Jensen; Toshihiko Yanase; Tomoko Nakamura; Akira Iwase; Anthe Stylianou; Nadeem R Abu-Rustum; Carol Aghajanian; Robert Soslow; Arnaud Da Cruz Paula; Richard P Koche; Britta Weigelt; Jesper Christensen; Kristian Helin; Paul A C Cloos
Journal:  Cancer Res       Date:  2020-07-08       Impact factor: 12.701

5.  FOXO1/3 and PTEN Depletion in Granulosa Cells Promotes Ovarian Granulosa Cell Tumor Development.

Authors:  Zhilin Liu; Yi A Ren; Stephanie A Pangas; Jaye Adams; Wei Zhou; Diego H Castrillon; Dagmar Wilhelm; JoAnne S Richards
Journal:  Mol Endocrinol       Date:  2015-06-10

6.  The putative G-protein coupled estrogen receptor agonist G-1 suppresses proliferation of ovarian and breast cancer cells in a GPER-independent manner.

Authors:  Cheng Wang; Xiangmin Lv; Chao Jiang; John S Davis
Journal:  Am J Transl Res       Date:  2012-10-10       Impact factor: 4.060

7.  17β-estradiol inhibits spreading of metastatic cells from granulosa cell tumors through a non-genomic mechanism involving GPER1.

Authors:  Charlotte M François; Richard Wargnier; Florence Petit; Thibaut Goulvent; Ruth Rimokh; Isabelle Treilleux; Isabelle Ray-Coquard; Valeria Zazzu; Joëlle Cohen-Tannoudji; Céline J Guigon
Journal:  Carcinogenesis       Date:  2015-03-30       Impact factor: 4.944

8.  Betaglycan alters NFκB-TGFβ2 cross talk to reduce survival of human granulosa tumor cells.

Authors:  Maree Bilandzic; Simon Chu; Yao Wang; Han L Tan; Peter J Fuller; Jock K Findlay; Kaye L Stenvers
Journal:  Mol Endocrinol       Date:  2013-01-15

9.  Constitutive Activation of PI3K in Oocyte Induces Ovarian Granulosa Cell Tumors.

Authors:  So-Youn Kim; Katherine Ebbert; Marilia H Cordeiro; Megan M Romero; Kelly A Whelan; Adrian A Suarez; Teresa K Woodruff; Takeshi Kurita
Journal:  Cancer Res       Date:  2016-05-09       Impact factor: 12.701

10.  Characterization of the inhibitor of kappaB kinase (IKK) complex in granulosa cell tumors of the ovary and granulosa cell tumor-derived cell lines.

Authors:  Stacey Jamieson; Peter J Fuller
Journal:  Horm Cancer       Date:  2013-05-15       Impact factor: 3.869

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