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ADARp150 counteracts whole genome duplication
- van Gemert, Frank;
- Drakaki, Alexandra;
- Lozano, Isabel Morales;
- de Groot, Daniël;
- Uiterkamp, Maud Schoot;
- Proost, Natalie;
- Lieftink, Cor;
- van de Ven, Marieke;
- Beijersbergen, Roderick L;
- Jacobs, Heinz;
- Riele, Hein te
Published Web Location
https://doi.org/10.1093/nar/gkae700Abstract
Impaired control of the G1/S checkpoint allows initiation of DNA replication under non-permissive conditions. Unscheduled S-phase entry is associated with DNA replication stress, demanding for other checkpoints or cellular pathways to maintain proliferation. Here, we uncovered a requirement for ADARp150 to sustain proliferation of G1/S-checkpoint-defective cells under growth-restricting conditions. Besides its well-established mRNA editing function in inversely oriented short interspersed nuclear elements (SINEs), we found ADARp150 to exert a critical function in mitosis. ADARp150 depletion resulted in tetraploidization, impeding cell proliferation in mitogen-deprived conditions. Mechanistically we show that ADAR1 depletion induced aberrant expression of Cyclin B3, which was causative for mitotic failure and whole-genome duplication. Finally, we find that also in vivo ADAR1-depletion-provoked tetraploidization hampers tumor outgrowth.
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