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Sandoz, J.

Publications and source records attributed to Sandoz, J..

2 recordsLinked to original sources

Stress-Induced Nuclear Import Governs Transcription Recovery after DNA Damage

Genotoxic stress inhibits transcription, generating RNA-DNA hybrid intermediates that promote toxic transcription-replication conflicts (TRCs). Here, we show that genotoxic stress triggers transient Importin-/{beta}1-dependent nuclear import of the mitochondrial exonuclease EXD2 to resolve these conflicts and maintain genome stability. Mechanistically, once imported into the nucleus, EXD2 is recruited to elongation-arrested RNA polymerase II (RNAPII) associated with RNA-DNA hybrids, and its exonuclease activity limits their accumulation, thereby suppressing TRCs. Mutation of a putative EXD2 nuclear localization signal phenocopies disruption of nuclear import, whereas forced nuclear targeting of EXD2 bypasses it. However, sustained nuclear localization of EXD2 leads to mitotic defects, underscoring the importance of its tight spatial regulation. Consistent with a direct role for EXD2 in RNA-DNA hybrid resolution, overexpression of the ribonuclease RNaseH1 compensates for its depletion following DNA damage. Together, our findings introduce the concept of a trafficking-dependent checkpoint that transiently licenses EXD2 nuclease activity in the nucleus in response to genotoxic stress to resolve RNA-DNA hybrid intermediates at stalled RNAPII complexes TeaserStress-triggered nuclear import of EXD2 resolves harmful RNA-DNA hybrids to protect genome stability after DNA damage.

molecular biology↗

Active mRNA degradation by EXD2 nuclease elicits recovery of transcription after genotoxic stress

The transcriptional response to genotoxic stress involves gene expression arrest, followed by recovery of mRNA synthesis (RRS) after DNA repair. Using a small-scale RNA interference screen, we found that the lack of the EXD2 nuclease impaired RRS and decreased cell survival after UV irradiation, without affecting DNA repair. Overexpression of wild-type, but not nuclease-dead EXD2, restored RRS and cell survival. We observed that UV irradiation triggered recruitment of EXD2 to chromatin where the nuclease transiently interacts with RNA Polymerase II (RNAPII) to promote the degradation of nascent mRNAs synthesized at the time of genotoxic attack. Reconstitution of the EXD2-RNAPII partnership on a transcribed DNA template in vitro showed that EXD2 primarily interacts with an elongation-blocked RNAPII and efficiently digest mRNA. Overall, our data highlight a crucial new step in the transcriptional response to genotoxic attack in which EXD2 interacts with elongation-stalled RNAPII on chromatin to degrade the associated nascent mRNA, allowing transcription restart after DNA repair.

molecular biology↗