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Decoupling epigenetic and genetic effects through systematic analysis of gene position.

Chen, M Kate Licon Otsuka, R Pillus, L Trey Ideker

Published in Cell Reports

Classic "position-effect" experiments repositioned genes near telomeres to demonstrate that the epigenetic landscape can dramatically alter gene expression. Here, we show that systematic gene knockout collections provide an exceptional resource for interrogating position effects, not only near telomeres but at every genetic locus. Because a single ...

Checkpoint kinases regulate a global network of transcription factors in response to DNA damage.

Jaehnig, Ej Kuo, D Hombauer, H Trey Ideker Kolodner, Rd

Published in Cell Reports

DNA damage activates checkpoint kinases that induce several downstream events, including widespread changes in transcription. However, the specific connections between the checkpoint kinases and downstream transcription factors (TFs) are not well understood. Here, we integrate kinase mutant expression profiles, transcriptional regulatory interactio...

A UV-induced genetic network links the RSC complex to nucleotide excision repair and shows dose-dependent rewiring.

Srivas, R Costelloe, T Anne-Ruxandra Carvunis Sarkar, S Malta, E Sun, Sm Pool, M Kate Licon Van Welsem, T Van Leeuwen, F ...

Published in Cell Reports

Efficient repair of UV-induced DNA damage requires the precise coordination of nucleotide excision repair (NER) with numerous other biological processes. To map this crosstalk, we generated a differential genetic interaction map centered on quantitative growth measurements of >45,000 double mutants before and after different doses of UV radiation. ...

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