Javascript must be enabled to continue!
USP26-mediated stabilization of RAD51 promotes endometrial cancer progression and limits ferroptosis
View through CrossRef
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.
Frontiers Media SA
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.
Related Results
RAD51AP1 is a versatile RAD51 modulator
RAD51AP1 is a versatile RAD51 modulator
Summary
RAD51AP1 is an emergent key factor in homologous recombination (HR), the major pathway for accurate repair of DNA double-strand breaks, a...
Human AAA+ ATPase FIGNL1 suppresses RAD51-mediated ultra-fine bridge formation
Human AAA+ ATPase FIGNL1 suppresses RAD51-mediated ultra-fine bridge formation
Abstract
RAD51 filament is crucial for the homology-dependent repair of DNA double-strand breaks and stalled DNA replication fork protection. Positive and negative r...
BRCA2 chaperones RAD51 to single molecules of RPA-coated ssDNA
BRCA2 chaperones RAD51 to single molecules of RPA-coated ssDNA
Abstract
Mutations in the breast cancer susceptibility gene, BRCA2, greatly increase an individual’s lifetime risk of developing breast and ovarian cancers. BRCA2 s...
Abstract A092: DNA repair proficiency predicts disparities in triple negative breast cancer outcomes
Abstract A092: DNA repair proficiency predicts disparities in triple negative breast cancer outcomes
Abstract
Breast cancer remains as one of the most lethal type of gynecological cancers in women. Among various subtypes, triple negative breast cancer (TNBC) is the ...
Remodeling of the Rad51 DNA Strand-Exchange Protein by the Srs2 Helicase
Remodeling of the Rad51 DNA Strand-Exchange Protein by the Srs2 Helicase
Abstract
Homologous recombination is associated with the dynamic assembly and disassembly of DNA–protein complexes. Assembly of a nucleoprotein filament comprising s...
Identification of osteoporosis ferroptosis-related markers and potential therapeutic compounds based on bioinformatics methods and molecular docking technology
Identification of osteoporosis ferroptosis-related markers and potential therapeutic compounds based on bioinformatics methods and molecular docking technology
Abstract
Research background and purpose
Osteoporosis (OP) is one of the most common bone diseases worldwide, characterized by low bone mineral density and susceptibility ...
Deferoxamine Alleviates Osteoarthritis by Inhibiting Chondrocyte Ferroptosis and Activating the Nrf2 Pathway
Deferoxamine Alleviates Osteoarthritis by Inhibiting Chondrocyte Ferroptosis and Activating the Nrf2 Pathway
Objective: Osteoarthritis (OA) is a common disease with a complex pathology including mechanical load, inflammation, and metabolic factors. Chondrocyte ferroptosis contributes to O...
Abstract 1627: Metabolic links between obesity and ferroptosis in a murine model of breast cancer
Abstract 1627: Metabolic links between obesity and ferroptosis in a murine model of breast cancer
Abstract
Background Obesity is an established risk factor for post-menopausal triple negative breast cancer (TNBC). Multiple aspects of fatty acid metabolism, includ...

