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Bandyopadhyay S, et al.  (2010) Rewiring of genetic networks in response to DNA damage. Science 330(6009):1385-9

Abstract: Although cellular behaviors are dynamic, the networks that govern these behaviors have been mapped primarily as static snapshots. Using an approach called differential epistasis mapping, we have discovered widespread changes in genetic interaction among yeast kinases, phosphatases, and transcription factors as the cell responds to DNA damage. Differential interactions uncover many gene functions that go undetected in static conditions. They are very effective at identifying DNA repair pathways, highlighting new damage-dependent roles for the Slt2 kinase, Pph3 phosphatase, and histone variant Htz1. The data also reveal that protein complexes are generally stable in response to perturbation, but the functional relations between these complexes are substantially reorganized. Differential networks chart a new type of genetic landscape that is invaluable for mapping cellular responses to stimuli.

Status: Published Type: Journal Article | Research Support, N.I.H., Extramural | Research Support, Non-U.S. Gov't PubMed ID: 21127252

Topics addressed in this paper

Number of different genes curated to this paper: 12

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Topics Topics not linked to Genes Genes linked to topics (#1 - 10 )
BCK1 CBF1 DUN1 HDA1 HTZ1 KSS1 MEC1 PPH3 RAD52 SLT2
Additional Literature blue ball blue ball blue ball blue ball blue ball blue ball blue ball blue ball blue ball blue ball
Genetic Interactions blue ball blue ball blue ball blue ball blue ball blue ball blue ball blue ball blue ball blue ball
Large-scale genetic interaction yg ball
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Topics Genes linked to topics (#11 - 12 )
SMK1 TEL1
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Genetic Interactions blue ball blue ball
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