The core spliceosome as target and effector of non-canonical ATM signalling

Publication date

2015-07-02

Authors

Tresini, Maria
Warmerdam, Daniël O
Kolovos, Petros
Snijder, Loes
Vrouwe, Mischa G
Demmers, Jeroen A A
van IJcken, Wilfred F J
Grosveld, Frank G
Medema, René HISNI 000000039472444X
Hoeijmakers, Jan H J

Editors

Advisors

Supervisors

Document Type

Article

Collections

Open Access logo

License

taverne

Abstract

In response to DNA damage, tissue homoeostasis is ensured by protein networks promoting DNA repair, cell cycle arrest or apoptosis. DNA damage response signalling pathways coordinate these processes, partly by propagating gene-expression-modulating signals. DNA damage influences not only the abundance of messenger RNAs, but also their coding information through alternative splicing. Here we show that transcription-blocking DNA lesions promote chromatin displacement of late-stage spliceosomes and initiate a positive feedback loop centred on the signalling kinase ATM. We propose that initial spliceosome displacement and subsequent R-loop formation is triggered by pausing of RNA polymerase at DNA lesions. In turn, R-loops activate ATM, which signals to impede spliceosome organization further and augment ultraviolet-irradiation-triggered alternative splicing at the genome-wide level. Our findings define R-loop-dependent ATM activation by transcription-blocking lesions as an important event in the DNA damage response of non-replicating cells, and highlight a key role for spliceosome displacement in this process.

Keywords

Alternative Splicing, Ataxia Telangiectasia Mutated Proteins, Cell Line, Chromatin, DNA Damage, DNA-Directed RNA Polymerases, Enzyme Activation, Humans, Signal Transduction, Spliceosomes, Ultraviolet Rays, Taverne, Journal Article, Research Support, Non-U.S. Gov't

Citation

Tresini, M, Warmerdam, D O, Kolovos, P, Snijder, L, Vrouwe, M G, Demmers, J A A, van IJcken, W F J, Grosveld, F G, Medema, R H, Hoeijmakers, J H J, Mullenders, L H F, Vermeulen, W & Marteijn, J A 2015, 'The core spliceosome as target and effector of non-canonical ATM signalling', Nature, vol. 523, no. 7558, pp. 53-58. https://doi.org/10.1038/nature14512