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Updated: Jan 30, 2026

Two- and Three-Dimensional Live Cell Imaging of DNA Damage Response Proteins
Published on: September 28, 2012
A systems view on DNA damage response kinetics in Tetrahymena
Emily Nischwitz1, Vivien Schoonenberg1, Rachel Mullner1,2
1Institute of Molecular Biology (IMB), 55128 Mainz, Germany.
None:
A tightly regulated DNA damage response is critical to the overall integrity of the genome. Here, we combine transcriptomics and proteomics to study DNA damage response kinetics across well-established treatments in the ciliate Tetrahymena thermophila This extensive data set containing six conditions (HU, MMS, IR, HP, cisplatin, and UV) and seven time points (from 0 to 8 h) integrates over 250 paired transcriptome and proteome measurements. We observe upregulation of known DNA repair proteins as well as a global dynamic response of not yet characterized transcripts and proteins. Using artificial neural networks, we classify different expression trends in response to the damaging agents. These networks reveal both a core and specific global dynamic response to the different genotoxic stressors, highlighting unexpected pathway crosstalk. In addition to the comprehensive analysis presented here, the data can be explored via an accessible user interface. Ultimately, our study provides novel insights into the DNA damage response kinetics in Tetrahymena.
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