Cancers · 2021 · 25 citations · 22 references
Cancer ResearchCell AutophagyRadiation MedicineSignal TransductionOncologyRadiation TherapyRev1 Tls ProteinMedicineAutophagyCancer Cell BiologyCancer CellsRadiation OncologyCancer BiologyCell BiologyCell SignalingCancer Therapy ResistanceTumor Biology
Cancer therapy resistance is a persistent clinical challenge. Recently, inhibition of the mutagenic translesion synthesis (TLS) protein REV1 was shown to enhance tumor cell response to chemotherapy by triggering senescence hallmarks. These observations suggest REV1's important role in determining cancer cell response to chemotherapy. Whether REV1 inhibition would similarly sensitize cancer cells to radiation treatment is unknown. This study reports a lack of radiosensitization in response to REV1 inhibition by small molecule inhibitors in ionizing radiation-exposed cancer cells. Instead, REV1 inhibition unexpectedly triggers autophagy, which is a known biomarker of radioresistance. We report a possible role of the REV1 TLS protein in determining cancer treatment outcomes depending upon the type of DNA damage inflicted. Furthermore, we discover that REV1 inhibition directly triggers autophagy, an uncharacterized REV1 phenotype, with a significant bearing on cancer treatment regimens.
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The haplotype-resolved genome and epigenome of the aneuploid HeLa cancer cell line
Andrew C. Adey, Joshua N. Burton, Jacob O. Kitzman et al. · Nature · 2013 · 360 citations · Full text
Multi-omic measurements of heterogeneity in HeLa cells across laboratories
Yansheng Liu, Mi Yang, Torsten Mueller et al. · Nature Biotechnology · 2019 · 357 citations · Full text