Publication | Num. Conditions |
Brief Description | PubMed ID |
Yamane-Sando Y et al., 2014 | 1 | Fpk1/2 kinases regulate cellular sphingoid long-chain base abundance and alter cellular resistance to LCB elevation or depletion. (details) | 24510621 |
Yarragudi A et al., 2007 | 12 | Genome-wide analysis of transcriptional dependence and probable target sites for Abf1 and Rap1 in Saccharomyces cerevisiae. (details) | 17158163 |
Yasokawa D et al., 2010 | 5 | Toxicity of methanol and formaldehyde towards Saccharomyces cerevisiae as assessed by DNA microarray analysis. (details) | 19499198 |
Ye J et al., 2005 | 6 | Histone H4 lysine 91 acetylation a core domain modification associated with chromatin assembly. (details) | 15808514 |
Yeang CH et al., 2005 | 7 | Transcription factor deletions (details) | 15998451 |
Yeh CS et al., 2017 | 2 | The conserved AU dinucleotide at the 5' end of nascent U1 snRNA is optimized for the interaction with nuclear cap-binding-complex. (details) | 28934473 |
Yiu G et al., 2008 | 6 | Expression after 8 generations during replicative aging; 6 replicates (details) | 18245757 |
Yiu G et al., 2008 | 7 | Expression after 18-20 generations during replicative aging; 7 replicates (details) | 18245757 |
Yiu G et al., 2008 | 7 | Expression after 12 generations during replicative aging; 7 replicates (details) | 18245757 |
Yiu G et al., 2008 | 7 | Expression after one generation during replicative aging; 7 replicates (details) | 18245757 |
Yona AH et al., 2012 | 40 | Chromosomal duplication is a transient evolutionary solution to stress. (details) | 23197825 |
Yoshimoto H et al., 2002 | 24 | Response to Ca(2+) in calcineurin/Crz1 pathway regulated gene expression (details) | 12058033 |
Yoshimoto H et al., 2002 | 16 | Response to Na(+) in calcineurin/Crz1 pathway regulated gene expression (details) | 12058033 |
Yu C et al., 2006 | 14 | Contribution of the histone H3 and H4 amino termini to Gcn4p- and Gcn5p-mediated transcription in yeast. (details) | 16461773 |
Yun CW et al., 2000 | 4 | Iron uptake (details) | 10744769 |
Zeng WY et al., 2017 | 12 | Comparative transcriptomes reveal novel evolutionary strategies adopted by Saccharomyces cerevisiae with improved xylose utilization capability. (details) | 28004152 |
Zeng WY et al., 2016 | 8 | Transcriptomes of a xylose-utilizing industrial flocculating Saccharomyces cerevisiae strain cultured in media containing different sugar sources (details) | 27485516 |
Zhang J et al., 2010 | 24 | The beta-subunits of the Snf1 kinase in Saccharomyces cerevisiae, Gal83 and Sip2, but not Sip1, are redundant in glucose derepression and regulation of sterol biosynthesis. (details) | 20545859 |
Zhang J et al., 2011 | 24 | Mapping the interaction of Snf1 with TORC1 in Saccharomyces cerevisiae. (details) | 22068328 |
Zhang Y et al., 2015 | 10 | ChiNet uncovers rewired transcription subnetworks in tolerant yeast for advanced biofuels conversion. (details) | 25897127 |
Zheng W et al., 2010 | 48 | Genetic analysis of variation in transcription factor binding in yeast. (details) | 20237471 |
Zhou X et al., 2011 | 66 | Integrated approaches reveal determinants of genome-wide binding and function of the transcription factor Pho4. (details) | 21700227 |
Zhou Z et al., 2015 | 30 | UV induced ubiquitination of the yeast Rad4-Rad23 complex promotes survival by regulating cellular dNTP pools. (details) | 26150418 |
Zhu C et al., 2009 | 24 | High-resolution DNA-binding specificity analysis of yeast transcription factors. (details) | 19158363 |
Zhu G et al., 2000 | 26 | Two yeast forkhead genes regulate the cell cycle and pseudohyphal growth. (details) | 10894548 |
Zhu J et al., 2008 | 9 | Integrating large-scale functional genomic data to dissect the complexity of yeast regulatory networks. (details) | 18552845 |
Zhu X et al., 2015 | 6 | Mediator tail subunits can form amyloid-like aggregates in vivo and affect stress response in yeast. (details) | 26138482 |
Zhu X et al., 2017 | 4 | Expression data from Saccharomyces cerevisiae upon honokiol treatment (details) | 28499955 |