ERK3 regulates TDP2-mediated DNA damage response and chemoresistance in lung cancer cells
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https://hdl.handle.net/10037/23668Dato
2015-12-19Type
Journal articleTidsskriftartikkel
Peer reviewed
Forfatter
Bian, Ka; Muppani, Naveen Reddy; Elkhadragy, Lobna; Wang, Wei; Zhang, Cheng; Chen, Tenghui; Jung, Sungyun; Seternes, Ole Morten; Long, WeiwenSammendrag
Posttranslational modifications (PTMs), such as phosphorylation and
ubiquitination, play critical regulatory roles in the assembly of DNA damage response
proteins on the DNA damage site and their activities in DNA damage repair. Tyrosyl
DNA phosphodiesterase 2 (TDP2) repairs Topoisomerase 2 (Top2)-linked DNA
damage, thereby protecting cancer cells against Top2 inhibitors-induced growth
inhibition and cell death. The regulation of TDP2 activity by post-translational
modifications in DNA repair, however, remains unclear. In the current study, we
have found that ERK3, an atypical MAPK, phosphorylates TDP2 at S60 and regulates
TDP2’s phosphodiesterase activity, thereby cooperatively protecting lung cancer cells
against Top2 inhibitors-induced DNA damage and growth inhibition. As such, our
study revealed a post-translational regulation of TDP2 activity and discovered a new
role of ERK3 in increasing cancer cells’ DNA damage response and chemoresistance
to Top2 inhibitors.
Forlag
Impact journalsSitering
Bian, Muppani, Elkhadragy, Wang W, Zhang, Chen, Jung, Seternes om, Long. ERK3 regulates TDP2-mediated DNA damage response and chemoresistance in lung cancer cells. OncoTarget. 2015;7(6):6665-6675Metadata
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Copyright 2015 The Author(s)