The X-linked trichothiodystrophy-causing gene RNF113A links the spliceosome to cell survival upon DNA damage

Prolonged cell survival occurs through the expression of specific protein isoforms generated by alternate splicing of mRNA precursors in cancer cells. How alternate splicing regulates tumor development and resistance to targeted therapies in cancer remain poorly understood. Here we show that RNF113A...

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Veröffentlicht in:Nature communications 2020-03, Vol.11 (1), p.1270-21, Article 1270
Hauptverfasser: Shostak, Kateryna, Jiang, Zheshen, Charloteaux, Benoit, Mayer, Alice, Habraken, Yvette, Tharun, Lars, Klein, Sebastian, Xu, Xinyi, Duong, Hong Quan, Vislovukh, Andrii, Close, Pierre, Florin, Alexandra, Rambow, Florian, Marine, Jean-Christophe, Büttner, Reinhard, Chariot, Alain
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Sprache:eng
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DNA
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Zusammenfassung:Prolonged cell survival occurs through the expression of specific protein isoforms generated by alternate splicing of mRNA precursors in cancer cells. How alternate splicing regulates tumor development and resistance to targeted therapies in cancer remain poorly understood. Here we show that RNF113A, whose loss-of-function causes the X-linked trichothiodystrophy, is overexpressed in lung cancer and protects from Cisplatin-dependent cell death. RNF113A is a RNA-binding protein which regulates the splicing of multiple candidates involved in cell survival. RNF113A deficiency triggers cell death upon DNA damage through multiple mechanisms, including apoptosis via the destabilization of the prosurvival protein MCL-1, ferroptosis due to enhanced SAT1 expression, and increased production of ROS due to altered Noxa1 expression. RNF113A deficiency circumvents the resistance to Cisplatin and to BCL-2 inhibitors through the destabilization of MCL-1, which thus defines spliceosome inhibitors as a therapeutic approach to treat tumors showing acquired resistance to specific drugs due to MCL-1 stabilization. Alternate splicing of mRNA precursors has been linked to tumor development. Here the authors reveal a role of the E3 ligase RNF113A in spliceosome regulation affecting cell survival upon DNA damage.
ISSN:2041-1723
2041-1723
DOI:10.1038/s41467-020-15003-7