FOXL2 posttranslational modifications mediated by GSK3 beta determine the growth of granulosa cell tumours

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36
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SCOPUS

38

초록

Approximately 97% of patients with ovarian granulosa cell tumours (GCTs) bear the C134W mutation in FOXL2; however, the pathophysiological mechanism of this mutation is unknown. Here we report how this mutation affects GCT development. Sequential posttranslational modifications of the C134W mutant occur where hyperphosphorylation at serine 33 (S33) by GSK3 beta induces MDM2-mediated ubiquitination and proteasomal degradation. In contrast, S33 of wild-type FOXL2 is underphosphorylated, leading to its SUMOylation and stabilization. This prominent hyperphosphorylation is also observed at S33 of FOXL2 in GCT patients bearing the C134W mutation. In xenograft mice, the S33 phosphorylation status correlates with the oncogenicity of FOXL2, and the inhibition of GSK3 beta efficiently represses GCT growth. These findings reveal a previously unidentified regulatory mechanism that determines the oncogenic attributes of the C134W mutation via differential posttranslational modifications of FOXL2 in GCT development.

키워드

TRANSCRIPTION FACTOR FOXL2; KAPPA-B-ALPHA; FORKHEAD L2; SOMATIC MUTATION; OVARIAN FAILURE; ADULT; DIFFERENTIATION; UBIQUITINATION; STABILITY; REPRESSES
제목
FOXL2 posttranslational modifications mediated by GSK3 beta determine the growth of granulosa cell tumours
저자
Kim, Jae-Hong; Kim, Yong-Hak; Kim, Hong-Man; Park, Ho-Oak; Ha, Nam-Chul; Kim, Tae Heon; Park, Mira; Lee, Kangseok; Bae, Jeehyeon
DOI
10.1038/ncomms3936
발행일
2014-01
유형
Article
저널명
Nature Communications
권
5