Capicua (CIC) is a transcriptional repressor that counteracts activation of genes downstream of receptor tyrosine kinase (RTK)/Ras/ERK signaling. It is well-established that tumorigenesis, especially in glioblastoma (GBM), is attributed to hyperactive RTK/Ras/ERK signaling. While CIC is mutated in other tumors, here we show that CIC has a tumor suppressive function in GBM through an alternative mechanism. We find that CIC protein levels are negligible in GBM due to continuous proteasome-mediated degradation, which is mediated by the E3 ligase PJA1 and show that this occurs through binding of CIC to its DNA target and phosphorylation on residue S173. PJA1 knockdown increased CIC stability and extended survival using in-vivo models of GBM. Deletion of the ERK binding site resulted in stabilization of CIC and increased therapeutic efficacy of ERK inhibition in GBM models. Our results provide a rationale to target CIC degradation in Ras/ERK-driven tumors, including GBM, to increase efficacy of ERK inhibitors.Capicua (CIC) is a tumour suppressor in oligodendroglioma. Here, the authors show that ERK activation mediates CIC regulation via ubiquitination and degradation by PJA1 and a degradation resistant form of CIC enhances efficacy of ERK inhibition in glioblastoma.
CIC protein instability contributes to tumorigenesis in glioblastoma
S. Bunda,Pardeep Heir,J. Metcalf,A. Li,S. Agnihotri,S. Pusch,Mamatjan Yasin,Mira Li,K. Burrell,S. Mansouri,O. Singh,Mark R. Wilson,A. Alamsahebpour,R. Nejad,Bethany Choi,David Kim,A. von Deimling,G. Zadeh,K. Aldape
Published 2019 in Nature Communications
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- Publication year
2019
- Venue
Nature Communications
- Publication date
2019-02-08
- Fields of study
Biology, Medicine, Chemistry
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Semantic Scholar, PubMed
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