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Jarne-Sanz, I.

Publications and source records attributed to Jarne-Sanz, I..

2 recordsLinked to original sources

Integrative multi-omics reveals PARP14 as a key IFNγ-regulated mediator of metastatic progression in Ewing sarcoma.

Metastatic Ewing sarcoma (EwS) remains a major clinical challenge, highlighting the need to identify molecular drivers of disease dissemination. Through integrated transcriptomic, functional, and mechanistic analyses, we identify PARP14 as a key regulator of EwS metastatic progression. PARP14 is consistently upregulated in metastatic lesions across spontaneous and xenograft mouse models as well as in patient samples. Genetic and pharmacologic depletion of PARP14 (via siRNA knockdown, CRISPR-Cas9 knockout, or PROTAC-mediated degradation) significantly impaired EwS cell migration and invasion in vitro, without affecting proliferation or clonogenic capacity. In vivo, PARP14 loss delayed tumor growth and reduced metastatic burden, supporting a functional role in disease progression. Conversely, IFN{gamma}-induced PARP14 upregulation and stable overexpression enhanced EwS cell migration and increased lung metastasis formation. Transcriptomic profiling of PARP14-deficient cells revealed downregulation of invasive signatures and enrichment of inflammatory and p53-related pathways, together with gene sets associated with chromatin remodeling. Subcellular fractionation and interactome analyses showed that PARP14 localizes to cytoplasmic, nuclear, and chromatin-associated compartments, and interacts with chromatin, cytoskeletal and ECM regulators. ChlP analyses further demonstrated PARP14 binding to promoters enriched for NRF1 motifs, suggesting a role as a transcriptional co-regulator influencing gene networks relevant to EwS progression. Together, our results establish PARP14 as a contributor to EwS dissemination and uncover a previously unappreciated chromatin-associated role for this protein, supporting its potential as both a biomarker and therapeutic target in metastatic EwS. STATEMENT OF SIGNIFICANCEWe identify PARP14 as a novel driver of Ewing sarcoma metastasis through integrated multi-omics profiling. Genetic and pharmacological interrogation establishes PARP14 as a promising therapeutic target for this understudied malignancy.

cancer biology↗

NF2 lacking exon 11 isoform induced by antisense gene therapy is able to recover partially merlin deficiency on NF2-related Schwannomatosis iPSC-derived spheroid model

NF2-related Schwannomatosis (NF2-SWN) is an inherited autosomal dominant disorder resulting from loss-of-function mutations in the NF2 gene, for which no effective treatment is currently available. Furthermore, truncating variants in NF2 are associated with the severest phenotype compared to in-frame or missense variants. Previously, a shorter NF2 isoform with exon 11 skipped (merlin_e-11), induced through antisense morpholino oligomers (PMOs), was able to partially rescue the deleterious effect of nonsense variants located at that exon in patients primary fibroblast. To test the potential of this approach into Schwann cells, those responsible of NF2-SWN tumours, we developed an iPSC-based model carrying heterozygous and homozygous truncating variants on exon 11 of the NF2 gene and differentiated them to Schwann cells forming spheroids. After 3 days of treatment, merlin_e-11 expression was induced in NF2-deficient cell lines. Furthermore, key pathways associated with NF2-deficiency in schwannomas, such as PI3K/Akt/mTORC and YAP levels, were recovered without signs of toxicity. These results confirm that the PMO treatment induces effective skipping of exon 11 in Schwann cell spheroids, generating an hypomorphic merlin_e-11 that has the capacity to partially rescue merlin-deficiency in NF2-SWN spheroid cell model and it being a potential treatment of patients harbouring truncating variants located in exon 11.

genetics↗