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Overexpression of betaTrCP1 elicits cell death in cisplatin-induced senescent cells

Belmonte-Fernandez, A.; Herrero-Ruiz, J.; Limon-Mortes, M. C.; Saez, C.; Japon, M. A.; Mora-Santos, M.; Romero, F.

2024-11-13 cell biology
10.1101/2024.11.12.622981 bioRxiv
Show abstract

Senescence is a non-proliferative cellular state derived from aging or in response to exogenous insults, such as those that cause DNA damage. As a result of cancer treatments like cisplatin, certain tumor cells may undergo senescence. However, rather than being beneficial for patients, this is detrimental because these cells might proliferate again under specific conditions and, more importantly, because they synthesize and secrete molecules that promote the proliferation of nearby cells. Therefore, to achieve complete tumor remission, it is necessary to develop senolytic compounds to eliminate senescent cells. Here, we studied the role of {beta}TrCP1 in cell proliferation and senescence and found that lentiviral overexpression of {beta}TrCP1 induces the death of senescent cells obtained after cisplatin treatment in both two-dimensional cell cultures and tumorspheres. Mechanistically, we demonstrated that overexpression of {beta}TrCP1 triggers proteasome- dependent degradation of p21 CIP1, allowing damaged cells to progress through the cell cycle and consequently die. Furthermore, we identified nucleophosmin 1 (NPM1) as the intermediary molecule involved in the effect of {beta}TrCP1 on p21 CIP1. We determined that increased amounts of {beta}TrCP1 partially retains NPM1 in the nucleoli, preventing it from associating with p21 CIP1, thus leaving it unprotected from degradation by the proteasome. These results have allowed us to discover a potential new target for senolytic drugs, as retaining NPM1 in the nucleoli under senescent conditions induces cell death.

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