Literature DB >> 21119601

Differential apoptotic activities of wild-type FOXL2 and the adult-type granulosa cell tumor-associated mutant FOXL2 (C134W).

J-H Kim1, S Yoon, M Park, H-O Park, J-J Ko, K Lee, J Bae.   

Abstract

Some mutations in FOXL2 result in premature ovarian failure accompanied by blepharophimosis, ptosis, epicanthus inversus syndrome type I disease, and FOXL2-null mice exhibit developmental defects in granulosa cells. Recently, FOXL2 c.402C>G, a new somatic mutation that leads to a p.C134W change, was found in the majority of adult-type ovarian granulosa cell tumors (GCTs). In this study, we investigated the possible mechanisms by which the C134W mutation contributes to the development of GCTs. Wild-type (WT) and mutant FOXL2 displayed differential apoptotic activities. Specifically, WT FOXL2 induced significant granulosa cell death, but the mutant exhibited minimal cell death. The FOXL2-induced apoptotic response was greatly dependent on caspase 8, BID and BAK because the depletion of any of these three proteins inhibited FOXL2 from eliciting the full apoptotic response. Activation of caspase 8 and subsequent increased production of truncated BID, and oligomerization of BAK, and release of cytochrome c were all associated with the apoptosis induced by WT FOXL2 expression. In contrast, the mutant FOXL2 was unable to elicit the full array of apoptotic signaling responses. In addition, we found differential TNF-R1 (tumor necrosis factor-receptor 1) and Fas (CD95/APO-1) upregulation between the WT and the mutant, and the silencing of TNF-R1 or Fas and the blockage of the death signaling mediated by TNF-R1 or Fas using TNF-Fc or Fas-Fc, respectively, resulted in significant attenuations of FOXL2-induced apoptosis. Moreover, granulosa cells that expressed either WT FOXL2 or mutant exhibited distinct cell death sensitivities on activation of death receptors and deprivation of serum. Thus, the differential activities of FOXL2 and its mutant may partially account for the pathophysiology of GCT development.

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Year:  2010        PMID: 21119601     DOI: 10.1038/onc.2010.541

Source DB:  PubMed          Journal:  Oncogene        ISSN: 0950-9232            Impact factor:   9.867


  32 in total

Review 1.  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

2.  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

3.  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

Review 4.  The disparate origins of ovarian cancers: pathogenesis and prevention strategies.

Authors:  Anthony N Karnezis; Kathleen R Cho; C Blake Gilks; Celeste Leigh Pearce; David G Huntsman
Journal:  Nat Rev Cancer       Date:  2016-11-25       Impact factor: 60.716

5.  Increased FOXL2 expression alters uterine structures and functions†.

Authors:  Rong Li; San-Pin Wu; Lecong Zhou; Barbara Nicol; John P Lydon; Humphrey H-C Yao; Francesco J DeMayo
Journal:  Biol Reprod       Date:  2020-10-29       Impact factor: 4.285

6.  Aberrant and constitutive expression of FOXL2 impairs ovarian development and functions in mice.

Authors:  Barbara Nicol; Karina Rodriguez; Humphrey H-C Yao
Journal:  Biol Reprod       Date:  2020-10-29       Impact factor: 4.285

7.  Essential but differential role of FOXL2wt and FOXL2C134W in GDF-9 stimulation of follistatin transcription in co-operation with Smad3 in the human granulosa cell line COV434.

Authors:  David Nonis; Kirsten J McTavish; Shunichi Shimasaki
Journal:  Mol Cell Endocrinol       Date:  2013-03-21       Impact factor: 4.102

8.  FOXL2C134W-Induced CYP19 Expression via Cooperation With SMAD3 in HGrC1 Cells.

Authors:  Martina Belli; Nahoko Iwata; Tomoko Nakamura; Akira Iwase; Dwayne Stupack; Shunichi Shimasaki
Journal:  Endocrinology       Date:  2018-04-01       Impact factor: 4.736

9.  Aberrant granulosa cell-fate related to inactivated p53/Rb signaling contributes to granulosa cell tumors and to FOXL2 downregulation in the mouse ovary.

Authors:  Victoria Cluzet; Marie M Devillers; Florence Petit; Stéphanie Chauvin; Charlotte M François; Frank Giton; Catherine Genestie; Nathalie di Clemente; Joëlle Cohen-Tannoudji; Céline J Guigon
Journal:  Oncogene       Date:  2019-11-19       Impact factor: 9.867

10.  Familial Occurrence of Adult Granulosa Cell Tumors: Analysis of Whole-Genome Germline Variants.

Authors:  Joline F Roze; Joachim Kutzera; Wouter Koole; Margreet G E M Ausems; Kristi Engelstad; Jurgen M J Piek; Cor D de Kroon; René H M Verheijen; Gijs van Haaften; Ronald P Zweemer; Glen R Monroe
Journal:  Cancers (Basel)       Date:  2021-05-18       Impact factor: 6.639

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