SPELL - S. cerevisiae - Dataset Listing
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Dataset Listing

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SPELL Version 2.0.3

Publication Num.
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Brief Description PubMed ID
Golla U et al., 2017 4 Genome-wide monitoring of gene expression in Saccharomyces cerevisiae upon KP1019 treatment (details) 29228701
Gil FN et al., 2018 30 Comparative analysis of transcriptomic responses to sub-lethal levels of six environmentally relevant pesticides in Saccharomyces cerevisiae. (details) 29611082
Chia SZ et al., 2018 7 Knockout of the Hmt1p Arginine Methyltransferase in Saccharomyces cerevisiae Leads to the Dysregulation of Phosphate-associated Genes and Processes. (details) 30206180
Cho CY et al., 2019 270 The cell-cycle transcriptional network generates and transmits a pulse of transcription once each cell cycle. (details) 30668223
Gaillard H et al., 2019 6 The Nup84 complex coordinates the DNA damage response to warrant genome integrity. (details) 30715474
Blasco-Moreno B et al., 2019 4 The exonuclease Xrn1 activates transcription and translation of mRNAs encoding membrane proteins. (details) 30899024
Lien PTK et al., 2019 8 Pop2 phosphorylation at S39 contributes to the glucose repression of stress response genes, HSP12 and HSP26. (details) 30973945
Pagano L et al., 2019 6 In Vivo-In Vitro Comparative Toxicology of Cadmium Sulphide Quantum Dots in the Model Organism Saccharomyces cerevisiae. (details) 30986968
Farrugia G et al., 2019 12 Aspirin impairs acetyl-coenzyme A metabolism in redox-compromised yeast cells. (details) 30992471
Hopfler M et al., 2019 12 Slx5/Slx8-dependent ubiquitin hotspots on chromatin contribute to stress tolerance. (details) 31015336
Ahmed K et al., 2019 8 Hyperactive TORC1 sensitizes yeast cells to endoplasmic reticulum stress by compromising cell wall integrity. (details) 31144305
Romero AM et al., 2019 11 A genome-wide transcriptional study reveals that iron deficiency inhibits the yeast TORC1 pathway. (details) 31394264
Kunkel J et al., 2019 21 Integrated TORC1 and PKA signaling control the temporal activation of glucose-induced gene expression in yeast. (details) 31395866
Moreno AD et al., 2019 6 Insoluble solids at high concentrations repress yeast's response against stress and increase intracellular ROS levels. (details) 31439886
Sunyer-Figueres M et al., 2020 15 Transcriptomic Insights into the Effect of Melatonin in Saccharomyces cerevisiae in the Presence and Absence of Oxidative Stress. (details) 33019712
Garcia-Martinez J et al., 2021 10 Recruitment of Xrn1 to stress-induced genes allows efficient transcription by controlling RNA polymerase II backtracking. (details) 33258404
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
Bao X et al., 2021 10 Shortening of membrane lipid acyl chains compensates for phosphatidylcholine deficiency in choline-auxotroph yeast. (details) 34520050
Moreno AD et al., 2022 6 Insights into cell robustness against lignocellulosic inhibitors and insoluble solids in bioethanol production processes. (details) 35017613
Godillot J et al., 2022 24 The Timing of Nitrogen Addition Impacts Yeast Genes Expression and the Production of Aroma Compounds During Wine Fermentation. (details) 35273585
Revilleza JEC et al., 2022 6 Regulation of CLB6 expression by the cytoplasmic deadenylase Ccr4 through its coding and 3' UTR regions. (details) 35522675
Alhaj Sulaiman A et al., 2022 12 The histone H2B Arg95 residue links the pheromone response pathway to rapamycin-induced G(1) arrest in yeast. (details) 35705668
Lu PYT et al., 2022 10 A balancing act: interactions within NuA4/TIP60 regulate picNuA4 function in Saccharomyces cerevisiae and humans. (details) 36066422
Jimenez-Gutierrez E et al., 2022 6 Neomycin Interferes with Phosphatidylinositol-4,5-Bisphosphate at the Yeast Plasma Membrane and Activates the Cell Wall Integrity Pathway. (details) 36232332
Chattopadhyay S et al., 2022 4 RNA-controlled nucleocytoplasmic shuttling of mRNA decay factors regulates mRNA synthesis and a novel mRNA decay pathway. (details) 36418294
Wu Y et al., 2022 16 Saccharomyces cerevisiae employs complex regulation strategies to tolerate low pH stress during ethanol production. (details) 36419096
Kamata K et al., 2023 3 Spt3 and Spt8 Are Involved in the Formation of a Silencing Boundary by Interacting with TATA-Binding Protein. (details) 37189367
Park ZM et al., 2023 175 Kar4 is required for the normal pattern of meiotic gene expression. (details) 37639444