Publication | Num. Conditions |
Brief Description | PubMed ID |
Kaplan T et al., 2008 | 34 | Cell cycle- and chaperone-mediated regulation of H3K56ac incorporation in yeast. (details) | 19023413 |
Keller G et al., 2001 | 4 | Haa1 analysis (details) | 11504737 |
Kelly GT et al., 2006 | 6 | Cellular effects induced by the antitumor agent azinomycin B. (details) | 16720269 |
Kemmeren P et al., 2014 | 20 | Large-scale genetic perturbations reveal regulatory networks and an abundance of gene-specific repressors; yeast wt-matA pool - plate reader (details) | 24766815 |
Kemmeren P et al., 2014 | 244 | Large-scale genetic perturbations reveal regulatory networks and an abundance of gene-specific repressors; Expression profiling of 376 wildtypes to assess day-to-day variance (details) | 24766815 |
Kemmeren P et al., 2014 | 8 | Large-scale genetic perturbations reveal regulatory networks and an abundance of gene-specific repressors; yeast wt-matA pool (details) | 24766815 |
Kemmeren P et al., 2014 | 200 | Large-scale genetic perturbations reveal regulatory networks and an abundance of gene-specific repressors; yeast wt pool - plate reader (details) | 24766815 |
Kemmeren P et al., 2014 | 200 | Large-scale genetic perturbations reveal regulatory networks and an abundance of gene-specific repressors; yeast wt pool (details) | 24766815 |
Khakhina S et al., 2015 | 8 | Control of Plasma Membrane Permeability by ABC Transporters. (details) | 25724885 |
Kim HS et al., 2009 | 9 | Dissecting the pleiotropic consequences of a quantitative trait nucleotide. (details) | 19456872 |
Kitagawa E et al., 2005 | 27 | Effects of iodine on global gene expression in Saccharomyces cerevisiae. (details) | 16377885 |
Kitagawa E et al., 2003 | 15 | Correlation of the structures of agricultural fungicides to gene expression in Saccharomyces cerevisiae upon exposure to toxic doses. (details) | 12854720 |
Kitagawa E et al., 2002 | 9 | Effects of the pesticide thiuram: genome-wide screening of indicator genes by yeast DNA microarray. (details) | 12269742 |
Klecker T et al., 2015 | 24 | MDM33 overexpression suppressor screen (details) | 26669658 |
Klevecz RR et al., 2004 | 32 | A genomewide oscillation in transcription gates DNA replication and cell cycle. (details) | 14734811 |
Klim J et al., 2021 | 17 | Genetic interaction network has a very limited impact on the evolutionary trajectories in continuous culture-grown populations of yeast. (details) | 34039270 |
Klockow C et al., 2008 | 7 | In vivo regulation of glucose transporter genes at glucose concentrations between 0 and 500 mg/L in a wild type of Saccharomyces cerevisiae. (details) | 18455824 |
Klopf E et al., 2017 | 8 | INO80 represses osmostress induced gene expression by resetting promoter proximal nucleosomes. (details) | 28025392 |
Knijnenburg TA et al., 2007 | 30 | Exploiting combinatorial cultivation conditions to infer transcriptional regulation. (details) | 17241460 |
Knijnenburg TA et al., 2009 | 170 | Combinatorial effects of environmental parameters on transcriptional regulation in Saccharomyces cerevisiae: a quantitative analysis of a compendium of chemostat-based transcriptome data. (details) | 19173729 |
Komili S et al., 2007 | 24 | Functional specificity among ribosomal proteins regulates gene expression. (details) | 17981122 |
Kozak BU et al., 2014 | 12 | Replacement of the Saccharomyces cerevisiae acetyl-CoA synthetases by alternative pathways for cytosolic acetyl-CoA synthesis. (details) | 24269999 |
Kresnowati MT et al., 2006 | 16 | When transcriptome meets metabolome: fast cellular responses of yeast to sudden relief of glucose limitation. (details) | 16969341 |
Kucukgoze G et al., 2013 | 6 | Evolutionary engineering and transcriptomic analysis of nickel-resistant Saccharomyces cerevisiae. (details) | 23992612 |
Kugler KG et al., 2016 | 23 | Ribosome quality control is a central protection mechanism for yeast exposed to Deoxynivalenol and Trichothecin (details) | 27245696 |
Kugou K et al., 2007 | 8 | Mre11 mediates gene regulation in yeast spore development. (details) | 17396017 |
Kuhn KM et al., 2001 | 3 | Carbon source shift (details) | 11154278 |
Kundaje A et al., 2008 | 24 | A predictive model of the oxygen and heme regulatory network in yeast. (details) | 19008939 |
Kunkel J et al., 2019 | 21 | Integrated TORC1 and PKA signaling control the temporal activation of glucose-induced gene expression in yeast. (details) | 31395866 |
Kuranda K et al., 2006 | 36 | Investigating the caffeine effects in the yeast Saccharomyces cerevisiae brings new insights into the connection between TOR, PKC and Ras/cAMP signalling pathways. (details) | 16925551 |