Scientists have uncovered a promising new strategy to weaken cancer cells’ natural defense mechanisms, potentially making chemotherapy more effective. In a study published in Volume 16 of Oncotarget, researchers identified the protein PRDX1 as a key player in helping tumors resist treatment. By targeting this protein, they propose a novel way to combat aggressive, treatment-resistant cancers.
Understanding Why Some Cancers Resist Treatment
Chemotherapy works by damaging the DNA of cancer cells, forcing them to self-destruct. However, many cancers develop robust repair systems that fix this damage, allowing the tumor to survive and grow. A central component of this repair machinery is a protein called ATM, which acts like a first responder in the cell, detecting DNA damage and coordinating its repair.
In ovarian cancer and other aggressive tumors, high levels of ATM have been associated with poor survival rates and resistance to chemotherapy.
The Study: How PRDX1 Protects Cancer Cells
The study, titled “PRDX1 protects ATM from arsenite-induced proteotoxicity and maintains its stability during DNA damage signaling,” was led by first author Reem Ali and corresponding author Dindial Ramotar from Hamad Bin Khalifa University in Qatar, in collaboration with researchers from the University of Nottingham in the UK.
Full blog - https://www.oncotarget.org/2025/07/14/prdx1-identified-as-key-to-chemotherapy-resistance-in-cancer-cells/
Paper DOI - https://doi.org/10.18632/oncotarget.28720
Correspondence to - Dindial Ramotar - dramotar@hbku.edu.qa
Video short - https://www.youtube.com/watch?v=suOhF7mPlNQ
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Keywords - cancer, redox signaling, homologous recombination, protein interaction, cell cycle, protein modification
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