Large-scale genetic perturbations reveal regulatory networks and an abundance of gene-specific repressors
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Publication date
2014
Authors
Kemmeren, P.P.C.W.
Sameith, K.
van de Pasch, L.A.L.
Benschop, J.J.
Lenstra, T.L.
Margaritis, A.
O'Duibhir, E.
Apweiler, E.
van Wageningen, S.
Ko, C.W.
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Abstract
To understand regulatory systems, it would be useful to uniformly determine how different components contribute to the expression of all other genes. We therefore monitored mRNA expression genomewide, for individual deletions of one-quarter of yeast genes, focusing on (putative) regulators. The resulting genetic perturbation signatures reflect many different properties. These include the architecture of protein complexes and pathways, identification of expression changes compatible with viability, and the varying responsiveness to genetic perturbation. The data are assembled into a genetic perturbation network that shows different connectivities for different classes of regulators. Four feed-forward loop (FFL) types are overrepresented, including incoherent type 2 FFLs that likely represent feedback. Systematic transcription factor classification shows a surprisingly high abundance of gene-specific repressors, suggesting that yeast chromatin is not as generally restrictive to transcription as is often assumed. The data set is useful for studying individual genes and for discovering properties of an entire regulatory system.
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Kemmeren, P P C W, Sameith, K, van de Pasch, L A L, Benschop, J J, Lenstra, T L, Margaritis, A, O'Duibhir, E, Apweiler, E, van Wageningen, S, Ko, C W, van Heesch, S A A C, Kashani, M M, Ampatziadis-Michailidis, G, Brok, M O, Brabers, N A C H, Miles, A J, Bouwmeester, D, van Hooff, S R, van Bakel, H H M J, Sluiters, E C, Bakker, L V, Snel, B, Lijnzaad, P, van Leenen, D, Groot Koerkamp, M J A & Holstege, F C P 2014, 'Large-scale genetic perturbations reveal regulatory networks and an abundance of gene-specific repressors', Cell, vol. 157, pp. 740-752. https://doi.org/10.1016/j.cell.2014.02.054