Literature DB >> 22544055

Discovery of novel protein partners of the transcription factor FOXL2 provides insights into its physiopathological roles.

David L'Hôte1, Adrien Georges, Anne Laure Todeschini, Jae-Hong Kim, Bérénice A Benayoun, Jeehyeong Bae, Reiner A Veitia.   

Abstract

FOXL2 transcription factor is responsible for the Blepharophimosis Ptosis Epicantus inversus Syndrome (BPES), a genetic disease involving craniofacial malformations often associated with ovarian failure. Recently, a somatic FOXL2 mutation (p.C134W) has been reported in >95% of adult-type granulosa cell tumors. Here, we have identified 10 novel FOXL2 partners by yeast-two-hybrid screening and co-immunoprecipitation. Most BPES-inducing mutated FOXL2 proteins display aggregation in cultured cells. Here, we show that two of the partners (NR2C1 and GMEB1) can be sequestered in such aggregates. This co-aggregation can contribute to the pathogenesis of FOXL2 mutations. We have also measured the effects of FOXL2 interactants on the transcriptional regulation of a series of target promoters. Some of the partners (CXXC4, CXXC5, BANF1) were able to repress FOXL2 activity indistinctively of the promoter. Interestingly, CREM-τ2α, which acted as a repressor on most promoters, increased wild-type (WT) FOXL2 activity on two promoters (PTGS2 and CYP19A1), but was unable to increase the activity of the oncogenic mutant p.C134W. Conversely, GMEB1, which also acted as a repressor on most promoters and increased WT FOXL2 activity on the Per2 promoter, increased to a greater extent the activity of the p.C134W variant. Interestingly, partners with intrinsic pro-apoptotic effect were able to increase apoptosis induction by WT FOXL2, but not by the p.C134W mutant, whereas partners with an anti-apoptotic effect decreased apoptosis induction by both FOXL2 versions. Altogether, these results suggest that the p.C134W mutated form fails to integrate signals through protein-protein interactions to regulate target promoter subsets and in particular to induce cell death.

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Year:  2012        PMID: 22544055     DOI: 10.1093/hmg/dds170

Source DB:  PubMed          Journal:  Hum Mol Genet        ISSN: 0964-6906            Impact factor:   6.150


  17 in total

1.  CXXC5 regulates differentiation of C2C12 myoblasts into myocytes.

Authors:  Guangming Li; Xiangli Ye; Xiyang Peng; Yun Deng; Wuzhou Yuan; Yongqing Li; Xiaoyang Mo; Xijun Wang; Yongqi Wan; Xianchu Liu; Tingfang Chen; Zhigang Jiang; Xiongwei Fan; Xiushan Wu; Yuequn Wang
Journal:  J Muscle Res Cell Motil       Date:  2014-11-30       Impact factor: 2.698

Review 2.  GATA factors in endocrine neoplasia.

Authors:  Marjut Pihlajoki; Anniina Färkkilä; Tea Soini; Markku Heikinheimo; David B Wilson
Journal:  Mol Cell Endocrinol       Date:  2015-05-28       Impact factor: 4.102

3.  Novel action of FOXL2 as mediator of Col1a2 gene autoregulation.

Authors:  Mara Marongiu; Manila Deiana; Loredana Marcia; Andrea Sbardellati; Isadora Asunis; Alessandra Meloni; Andrea Angius; Roberto Cusano; Angela Loi; Francesca Crobu; Giorgio Fotia; Francesco Cucca; David Schlessinger; Laura Crisponi
Journal:  Dev Biol       Date:  2016-05-19       Impact factor: 3.582

4.  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

5.  FOXL2, GATA4, and SMAD3 co-operatively modulate gene expression, cell viability and apoptosis in ovarian granulosa cell tumor cells.

Authors:  Mikko Anttonen; Marjut Pihlajoki; Noora Andersson; Adrien Georges; David L'hôte; Sanna Vattulainen; Anniina Färkkilä; Leila Unkila-Kallio; Reiner A Veitia; Markku Heikinheimo
Journal:  PLoS One       Date:  2014-01-09       Impact factor: 3.240

6.  The transcription factor FOXL2 mobilizes estrogen signaling to maintain the identity of ovarian granulosa cells.

Authors:  Adrien Georges; David L'Hôte; Anne Laure Todeschini; Aurélie Auguste; Bérangère Legois; Alain Zider; Reiner A Veitia
Journal:  Elife       Date:  2014-11-04       Impact factor: 8.140

7.  Estradiol-Estrogen Receptor α Mediates the Expression of the CXXC5 Gene through the Estrogen Response Element-Dependent Signaling Pathway.

Authors:  Pelin Yaşar; Gamze Ayaz; Mesut Muyan
Journal:  Sci Rep       Date:  2016-11-25       Impact factor: 4.379

8.  Overexpression of wild-type but not C134W mutant FOXL2 enhances GnRH-induced cell apoptosis by increasing GnRH receptor expression in human granulosa cell tumors.

Authors:  Jung-Chien Cheng; Christian Klausen; Peter C K Leung
Journal:  PLoS One       Date:  2013-01-23       Impact factor: 3.240

9.  Fine map of the Gct1 spontaneous ovarian granulosa cell tumor locus.

Authors:  Kerri N Smith; Sarah J Halfyard; Edward S Yaskowiak; Kathryn L Shultz; Wesley G Beamer; Ann M Dorward
Journal:  Mamm Genome       Date:  2012-11-18       Impact factor: 2.957

Review 10.  SMAD3 Activation: A Converging Point of Dysregulated TGF-Beta Superfamily Signaling and Genetic Aberrations in Granulosa Cell Tumor Development?

Authors:  Xin Fang; Yang Gao; Qinglei Li
Journal:  Biol Reprod       Date:  2016-09-28       Impact factor: 4.285

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