PulseExploreJournal ClubDebatesTrendingResearchersJournals
Instagram
HomeExploreJournal ClubTrending
Synapse
⌘+K
Synapse
April 10, 2026FEBS Journal1 citations

Compromised DNA replication in gut cells underlies sensitivity to genotoxic stress in the tardigrade Hypsibius exemplaris

View Full Paper
GQGonzalo Quiroga‐ArtigasPFPauline FontaniéBLBenjamin Lacroix

Key Points

  • To identify the key vulnerabilities in tardigrades that contribute to their sensitivity to genotoxic stress.
  • Utilized radiomimetic drugs (bleomycin, zeocin) to induce DNA breaks.
  • Observed effects on DNA replication and cellular proliferation in tardigrades.
  • Conducted pulse-wash experiments to assess the impact of transient genotoxic exposure.
  • Continuous drug exposure progressively killed tardigrades and caused body shrinkage.
  • Drugs disrupted DNA replication and triggered reparative synthesis in non-dividing tissues.
  • Transient exposure during cell replication exhausted proliferative capacity, leading to midgut failure.

Abstract

Tardigrades withstand severe DNA insults, including extreme doses of ionising radiation, through unique protective proteins and strong upregulation of canonical DNA repair pathways. Yet these extremophile animals are not immortal, and the cellular and organismal processes that ultimately fail under sustained genotoxic stress have not been characterised. Here, we identify DNA replication as the key vulnerability in the tardigrade Hypsibius exemplaris. Using the radiomimetic drugs bleomycin or zeocin to induce DNA breaks, we show that continuous exposure progressively kills tardigrades, accompanied by striking body shrinkage and lipid depletion. DNA synthesis labelling reveals that these drugs disrupt replication and trigger de novo reparative synthesis in select non-dividing tissues. Pulse-wash experiments demonstrate that even transient genotoxic exposure coincident with cell replication irreversibly exhausts gut cell proliferative capacity, leading to midgut failure and animal death, despite systemic induction of DNA repair genes. Germ cells and embryos, with their high proliferation rates, show heightened sensitivity. Cross-phyla survival assays in the eutelic nematode Caenorhabditis elegans and neoblast-rich planarian Schmidtea mediterranea further link proliferative activity to mortality kinetics under DNA damage. Collectively, our findings pinpoint DNA replication as an Achilles' heel of organismal survival under genotoxic stress, even in animals renowned for their extraordinary DNA damage tolerance.

Ask AI
Helpful
Bookmark
Share
View Full Paper

Cite This Study

Quiroga‐Artigas et al. (2026) studied this question.

synapsesocial.com/papers/69d895be6c1944d70ce06cdfhttps://doi.org/10.1111/febs.70542
Ask AI
Helpful
Bookmark
Share
View Full Paper