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Biology subjects

Taverna, D.

Publications and source records attributed to Taverna, D..

2 recordsLinked to original sources

p140Cap enhances breast cancer chemosensitivity by limiting an ABCC1-enriched stem-like compartment via β-Catenin inhibition

Chemotherapy response in breast cancer is highly heterogeneous and influenced by tumor-intrinsic drivers of drug sensitivity, including cancer stem cell abundance. We previously reported that the scaffold protein p140Cap limits breast cancer stem cell traits and delays tumor progression. Here, we investigated the role of p140Cap in shaping sensitivity to chemotherapy in HER2-positive and triple-negative breast cancer. In preclinical and patient-derived models, p140Cap enhances chemotherapy response by increasing intracellular doxorubicin retention, DNA damage and subsequent apoptosis. Mechanistically, p140Cap constrained a doxorubicin-negative side population enriched for stem-like properties and elevated ABCC1 expression via inhibition of {beta}-Catenin signaling. Constitutively active {beta}-Catenin expression reversed this phenotype, whereas pharmacological inhibition of the Wnt/{beta}-Catenin pathway with IWR-1 or LGK-974 sensitized p140Cap-deficient tumors to chemotherapy. Clinically, analyses of breast cancer cohorts and patient-derived xenograft models identify p140Cap as predictive biomarker of chemotherapy response, proposing p140Cap-guided patient stratification, dose optimization and rational combination therapies.

cancer biology↗

miR-210 is essential to retinal homeostasis in fruit flies and mice

miR-210 is one of the most evolutionarily conserved microRNAs. Recent studies in Drosophila melanogaster have unveiled that the absence of miR-210 leads to a progressive retinal degeneration characterized by the accumulation of lipid droplets and disruptions in lipid metabolism. Further investigation into lipid anabolism and catabolism revealed significant alterations in gene expression within these pathways. We provide the first morphological characterization of miR-210 KO mice retinas, highlighting a significant photoreceptor degeneration. While exploring potential parallels between miR-210 KO models in flies and mice, we examined mice lipid metabolism, circadian behaviour, and retinal transcriptome yet found no resemblances, suggesting divergent mechanisms of retinal degeneration between the two species. Simultaneously, analysis of the transcriptome in the brains of miR-210 KO flies revealed the potential existence of a shared upstream mechanism contributing to retinal degeneration in both fruit flies and mammals.

genetics↗