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Vert, A.

Publications and source records attributed to Vert, A..

2 recordsLinked to original sources

Chemotherapy induces a YAP1-dependent fetal conversion to human Colorectal Cancer cells that is predictive of poor patient outcome

Current therapy against colorectal cancer is based on DNA-damaging agents that eradicate highly proliferative malignant cells. Whether sublethal chemotherapy affects tumor cell behavior and impacts on patient outcome is primarily unstudied. We now show that sublethal chemotherapy imposes a quiescent-like state to p53 wildtype human colorectal cancer (CRC) cells that is linked to the acquisition of a fetal phenotype downstream of YAP1, similar to that observed after intestinal damage. CRC cells displaying this fetal phenotype exhibit tumor- initiating activity comparable to untreated cells but superior metastatic capacity. Notably, nuclear YAP1 accumulation, or detection of the fetal signature in tumors predict poor prognosis in CRC patients carrying p53 wildtype tumors. Collectively, our results uncover a potential adverse response of tumor cells to suboptimal chemotherapy, and identify nuclear YAP1 and fetal conversion of colorectal tumors as biomarkers for prognosis and therapy prescription. Statement of significanceChemotherapy induces a quiescent-like phenotype to colorectal cancer cells that is linked to the acquisition of a YAP1-dependent fetal signature. Notably, this signature is predictive of patient outcome in different cohorts of human colorectal cancer.

cancer biology

Dynamic association of IκBα to chromatin is regulated by acetylation and cleavage of histone H4

I{kappa}Bs exert a principal function as cytoplasmic inhibitors of the NF-kB transcription factors. Additional functions for I{kappa}B homologues have been described including association to chromatin and transcriptional regulatioin. Phosphorylated and SUMOylated I{kappa}B (pS-I{kappa}B) binds histones H2A and H4 in the stem and progenitor compartment of skin and intestine, but the mechanisms controlling its recruitment to chromatin are largely unstudied. We here show that serine 32-36 phosphorylation of I{kappa}B favors its binding with nucleosomes and demonstrated that p-I{kappa}B association to H4 is favored by acetylation at specific H4 lysine residues. N-terminal tail of H4 is lost during intestinal cell differentiation by proteolytic cleavage at residues 17-19 imposed ny trypsin or chymotrypsin, which interferes p-I{kappa}B binding. Paradoxically, inhibition of trypsin and chymotrypsin activity in HT29 cells increased p-I{kappa}B chromatin binding and impaired goblet cell differentiation, comparable to I{kappa}B deletion. Together our results indicate that dynamic binding of I{kappa}B to chromatin is a requirement for intestinal cell differentiation and provide a molecular base for the restricted nuclear distribution of p-I{kappa}B at specific stem cell compartments.

molecular biology