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Trigo-Gonzalez, G.

Publications and source records attributed to Trigo-Gonzalez, G..

2 recordsLinked to original sources

Genome-wide CRISPR screen identifies KEAP1 as a genetic dependency of ARID1A in an ovarian clear cell carcinoma model

ARID1A is the core DNA binding subunit of the BAF chromatin remodeling complex and is mutated in about [~]8% of all cancers. The frequency of ARID1A loss varies between cancer subtypes, with clear cell ovarian carcinoma (CCOC) presenting the highest incidence at >50% of cases. Despite a growing understanding of the consequences of ARID1A-loss in cancer, there remains limited targeted therapeutic options for ARID1A-deficient cancers. Using a genome-wide CRISPR screening approach, we identify KEAP1 as a genetic dependency of ARID1A in CCOC. Depletion or chemical perturbation of KEAP1 results in selective growth inhibition of ARID1A-KO cell lines and edited primary endometrial epithelial cells. While we confirm that KEAP1-NRF2 signalling is dysregulated in ARID1A-KO cells, we suggest that this synthetic lethality is not due to aberrant NRF2 signalling. Rather, we find that KEAP1 perturbation exacerbates genome instability phenotypes associated with ARID1A-deficiency. Together, our findings identify a potentially novel synthetic lethal interaction of wARID1A-deficient cells.

cancer biology↗

The pathognomonic FOXL2 C134W mutation alters DNA binding specificity

The somatic missense point mutation c.402C>G (p.C134W) in the FOXL2 transcription factor is pathognomonic for adult-type granulosa cell tumours (AGCT) and a diagnostic marker for this tumour type. However, the molecular consequences of this mutation and its contribution to the mechanisms of AGCT pathogenesis remain unclear. To explore the mechanisms driving FOXL2C134W pathogenicity we engineered V5-FOXL2WT and V5-FOXL2C134W inducible isogenic cell lines and performed ChIP-seq and transcriptome profiling. We found that FOXL2C134W associates with the majority of the FOXL2 WT DNA elements as well as a large collection of unique elements genome-wide. We confirmed an altered DNA binding specificity for FOXL2C134W in vitro and identified unique targets of FOXL2C134W including SLC35F2 whose expression increased sensitivity to YM155 in our model. Statement of SignificanceMechanistic understanding of FOXL2C134W induced regulatory state alterations drives discovery of a rationally designed therapeutic strategy.

cancer biology↗