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Arroyo-Barea, A.

Publications and source records attributed to Arroyo-Barea, A..

2 recordsLinked to original sources

MYC overexpression drives poor prognosis and differential sensitivity to treatments according to TP53 status in chronic lymphocytic leukemia

Chronic lymphocytic leukemia (CLL) is a lymphoid neoplasm with very heterogeneous clinical and biological behavior. Among molecular variables, TP53 alterations are well-established adverse prognostic markers; however, MYC activation, which has been linked to disease progression, has not been completely defined in terms of clinical and biological impact, particularly in relation to TP53 status. Here, we investigated the effects of MYC overexpression according to TP53 status using clinical and transcriptomic data from CLL patients and novel cellular models. CLL patients with TP53WT and MYC overexpression exhibited significantly shorter time to first treatment and overall survival, indicating an aggressive disease course comparable to that of patients with TP53 alterations. Consistently, MYC overexpression in in vitro TP53WTmodels was associated with increased proliferation, enrichment of AKT/mTOR signaling and upregulation of genes involved in leukemogenesis and tumor progression such as FOXO6. Moreover, MYC overexpression was associated with increased sensitivity to venetoclax in TP53WT cells. By contrast, the concurrence of MYC overexpression and TP53 dysfunction conferred resistance to conventional CLL therapies such as BCL2 or BTK inhibitors. Of note, we identified a glycolysis inhibitor, in monotherapy or combined with BKT inhibitors, as a potential therapeutic strategy for CLL patients harboring MYC overexpression and TP53 alterations.

cancer biology↗

The mechanoreceptor PIEZO1 is a novel oncogene in glioma by promoting astrocyte reactivity

Glioblastoma is the most common and aggressive brain tumour in adults. Despite advances in its molecular characterization, there is a gap-of-knowledge in the identification of bona fide drivers and potential therapeutic targets that could change the clinical picture. Mechanoreception, the sensing of mechanical cues by cells, has proven to be an important factor in cell biology, particularly in cancer. Piezo1 is a mechanoreceptor found in all cells and seems to play a role in different cancer types, such as gastric, breast or lung cancer. However, there is still lack of understanding about its role in the onset and progression of glioblastoma. Here, we show that Piezo1 acts as an oncogene in glioma by potentially promoting chronic astrocyte reactivity. We developed a novel transgenic murine model of Piezo1 overexpression in astrocytes. These animals had a significant reduction in overall survival and developed glioma with a penetrance of 30%. We also developed a PIEZO1-overexpressing U251 cell line and found that it had a more aggressive and reactive-like phenotype. Finally, we correlated the levels of PIEZO1 with the clinical outcome of a cohort of glioblastoma patients and observed that PIEZO1 is a biomarker of worse prognosis. However, PIEZO1 only correlated with worse prognosis in male patients, suggesting a sexual dimorphism. In conclusion, we identified Piezo1 as a bona fide driver of glioma, revealing its implication in astrocyte reactivity and identifying it as a biomarker for glioma in the clinic.

cancer biology↗