The Oncogenic FOXL2 C134W Mutation Is a Key Driver of Granulosa Cell Tumors

Author:

Llano Elena12ORCID,Todeschini Anne Laure3ORCID,Felipe-Medina Natalia1ORCID,Corte-Torres María D.4ORCID,Condezo Yazmine B.1ORCID,Sanchez-Martin Manuel5ORCID,López-Tamargo Sara6ORCID,Astudillo Aurora4ORCID,Puente Xose S.78ORCID,Pendas Alberto M.1ORCID,Veitia Reiner A.3910ORCID

Affiliation:

1. 1Molecular Mechanisms Program, Centro de Investigación del Cáncer and Instituto de Biologıía Molecular y Celular del Cáncer (CSIC-Universidad de Salamanca), Salamanca, Spain.

2. 2Departamento de Fisiología, Universidad de Salamanca, Salamanca, Spain.

3. 3Université Paris Cité, CNRS, Institut Jacques Monod, Paris, France.

4. 4Instituto de Investigación Sanitaria de Asturias, Hospital Universitario del Principado de Asturias, Oviedo, Spain.

5. 5Departamento de Medicina, Universidad de Salamanca, Salamanca, Spain.

6. 6Departamento de Bioquímica y Biología Molecular, Instituto Universitario de Oncología (IUOPA), Universidad de Oviedo, Oviedo, Spain.

7. 7Departamento de Bioquímica, Universidad de Oviedo, Oviedo, Spain.

8. 8Centro de Investigación Biomédica en Red de Cáncer (CIBERONC), Madrid, Spain.

9. 9Université Paris Saclay, Paris, France.

10. 10Institut de Biologie François Jacob, CEA, Fontenay-aux-Roses, Paris, France.

Abstract

Abstract Adult-type granulosa cell tumors (AGCT) are the most common type of malignant ovarian sex cord–stromal tumors. Most AGCTs carry the somatic variant c.402C>G (p.C134W) affecting the transcription factor FOXL2. Germline dominant variants in FOXL2 are responsible for blepharophimosis syndrome, which is characterized by underdevelopment of the eyelid. In this work, we generated a mouse model harboring the C134W variant of FOXL2 to evaluate in vivo the poorly understood oncogenic role of FOXL2. The mutation was dominant regarding eyelid hypoplasia, reminiscent of blepharophimosis syndrome. Interestingly, Foxl2+/C134W female mice had reduced fertility and developed AGCTs through a progression from abnormal ovaries with aberrant granulosa cells to ovaries with stromal hyperplasia and atypia and on to tumors in adut mice. The genes dysregulated in mouse AGCTs exhibited the hallmarks of cancer and were consistent with a gain-of-function of the mutated allele affecting TGFβ signaling. A comparison of these data with previous results on human AGCTs indicated similar deregulated pathways. Finally, a mutational analysis of mouse AGCT transcriptomic data suggested the absence of additional driver mutations apart from FOXL2-C134W. These results provide a clear in vivo example in which a single mutational hit triggers tumor development associated with profound transcriptomic alterations. Significance: A newly generated mouse model carrying a FOXL2 mutation characteristic of adult-type granulosa cell tumors shows that FOXL2 C134W shifts the transcriptome towards a signature of granulosa cell cancer and drives tumorigenesis.

Funder

Ministerio de Ciencia e Innovación

Junta de Castilla y León

Commissariat à l'Énergie Atomique et aux Énergies Alternatives

Publisher

American Association for Cancer Research (AACR)

Subject

Cancer Research,Oncology

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