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lower case Greek beta-catenin mediates growth defects induced my centrosome loss in APC mutant colorectal cancer independently of p53

Bourmoum, M.; Radulovich, N.; Tsao, M.-S.; Pelletier, L.

2023-02-16 cancer biology
10.1101/2023.02.13.528233 bioRxiv
Show abstract

Colorectal cancer is the third most common cancer and the second leading cause of cancer-related deaths worldwide. The centrosome is the main microtubule-organizing center in animal cells and centrosome amplification is a hallmark of cancer cells. To investigate the importance of centrosomes in colorectal cancer, we induced centrosome loss in normal and cancer human-derived colorectal organoids using centrinone B, a Polo-like kinase 4 (Plk4) inhibitor. We show that centrosome loss represses human normal colorectal organoid growth in a p53-dependent manner in accordance with previous studies in cell models [1]. However, cancer colorectal organoid lines exhibited different sensitivities to centrosome loss independently of p53. Centrinone-induced cancer organoid growth defect/death positively correlated with a loss of function mutation in the APC gene, suggesting a causal role of the hyperactive WNT pathway. Consistent with this notion, {beta}-catenin inhibition using XAV-939 or ICG-001 partially prevented centrinone-induced death and rescued the growth of APC-mutant organoid lines. Our study reveals a novel role for canonical WNT signaling in regulating centrosome loss-induced growth defect/death in APC-mutant colorectal cancer independently of the classical p53 pathway.

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