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USP26-mediated stabilization of RAD51 promotes endometrial cancer progression and limits ferroptosis

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Background Ferroptosis is increasingly implicated in endometrial cancer, but the role of the homologous recombination protein RAD51 in ferroptotic stress and its post-translational regulation remain unclear. Methods RAD51 expression was assessed in GEO datasets, UCEC tissues, and endometrial cancer cell lines. RAD51 loss-of-function was evaluated using proliferation, cell-death, Transwell, ferroptosis-related, and xenograft assays. IP–MS, co-immunoprecipitation, cycloheximide chase, proteasome inhibition, ubiquitination assays, USP26-C304S, and RAD51 rescue experiments were used to define USP26-dependent RAD51 regulation. Results RAD51 was upregulated in endometrial cancer and its depletion reduced proliferation and xenograft growth, lowered Transwell migration/invasion readouts, and increased ferroptosis-associated changes. USP26 associated with RAD51, reduced its ubiquitination, and stabilized RAD51 in a catalytic activity-dependent manner. RAD51 re-expression partially rescued the effects of USP26 depletion. Conclusions The USP26–RAD51 axis supports endometrial cancer progression and limits ferroptosis-associated stress, identifying RAD51 protein stability as a potential mechanistic vulnerability.
Title: USP26-mediated stabilization of RAD51 promotes endometrial cancer progression and limits ferroptosis
Description:
Background Ferroptosis is increasingly implicated in endometrial cancer, but the role of the homologous recombination protein RAD51 in ferroptotic stress and its post-translational regulation remain unclear.
Methods RAD51 expression was assessed in GEO datasets, UCEC tissues, and endometrial cancer cell lines.
RAD51 loss-of-function was evaluated using proliferation, cell-death, Transwell, ferroptosis-related, and xenograft assays.
IP–MS, co-immunoprecipitation, cycloheximide chase, proteasome inhibition, ubiquitination assays, USP26-C304S, and RAD51 rescue experiments were used to define USP26-dependent RAD51 regulation.
Results RAD51 was upregulated in endometrial cancer and its depletion reduced proliferation and xenograft growth, lowered Transwell migration/invasion readouts, and increased ferroptosis-associated changes.
USP26 associated with RAD51, reduced its ubiquitination, and stabilized RAD51 in a catalytic activity-dependent manner.
RAD51 re-expression partially rescued the effects of USP26 depletion.
Conclusions The USP26–RAD51 axis supports endometrial cancer progression and limits ferroptosis-associated stress, identifying RAD51 protein stability as a potential mechanistic vulnerability.

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