Click on a topic to see a list of all papers associated with that topic:
| Citation | Topic(s) |
|---|---|
| Geijer C, et al. (2012) Time course gene expression profiling of yeast spore germination reveals a network of transcription factors orchestrating the global response. BMC Genomics 13(1):554 | Computational analysis , Genomic expression study , Omics |
| Gelis S, et al. (2012) Adaptation to potassium starvation of wild-type and K(+)-transport mutant (trk1,2) of Saccharomyces cerevisiae: 2-dimensional gel electrophoresis-based proteomic approach. Microbiologyopen 1(2):182-93 | Large-scale protein detection , Omics |
| Geng J, et al. (2012) On enhancing productivity of bioethanol with multiple species. Biotechnol Bioeng 109(6):1508-17 | Computational analysis , Omics |
| Gerashchenko MV, et al. (2012) Genome-wide ribosome profiling reveals complex translational regulation in response to oxidative stress. Proc Natl Acad Sci U S A 109(43):17394-9 | Genomic expression study , Omics |
| Giardina BJ, et al. (2012) Comparative Proteomic Analysis of Transition of Saccharomyces cerevisiae from Glucose-Deficient Medium to Glucose-Rich Medium. Proteome Sci 10(1):40 | Large-scale protein detection , Omics |
| Gidvani RD, et al. (2012) A quantitative model of the initiation of DNA replication in Saccharomyces cerevisiae predicts the effects of system perturbations. BMC Syst Biol 6(1):78 | Computational analysis , Omics |
| Gillet LC, et al. (2012) Targeted data extraction of the MS/MS spectra generated by data-independent acquisition: a new concept for consistent and accurate proteome analysis. Mol Cell Proteomics 11(6):O111.016717 | Large-scale protein detection , Omics |
| Gilmore JM, et al. (2012) Characterization of a highly conserved histone related protein, Ydl156w, and its functional associations using quantitative proteomic analyses. Mol Cell Proteomics 11(4):M111.011544 | Genomic expression study , Omics |
| Gingold H, et al. (2012) Dynamic changes in translational efficiency are deduced from codon usage of the transcriptome. Nucleic Acids Res 40(20):10053-63 | Omics |
| Gkoutos GV and Hoehndorf R (2012) Ontology-based cross-species integration and analysis of Saccharomyces cerevisiae phenotypes. J Biomed Semantics 3 Suppl 2():S6 | Computational analysis , Omics |
| Glass K, et al. (2012) Implications of functional similarity for gene regulatory interactions. J R Soc Interface 9(72):1625-36 | Computational analysis , Omics |
| Gomez-Herreros F, et al. (2012) TFIIS is required for the balanced expression of the genes encoding ribosomal components under transcriptional stress. Nucleic Acids Res 40(14):6508-19 | Genomic co-immunoprecipitation study , Omics |
| Gomez-Pastor R, et al. (2012) Modification of the TRX2 gene dose in Saccharomyces cerevisiae affects hexokinase 2 gene regulation during wine yeast biomass production. Appl Microbiol Biotechnol 94(3):773-87 | Genomic expression study , Omics |
| Goncalves JP, et al. (2012) Regulatory Snapshots: integrative mining of regulatory modules from expression time series and regulatory networks. PLoS One 7(5):e35977 | Computational analysis , Omics |
| Gonzalez M, et al. (2012) High abundance of Serine/Threonine-rich regions predicted to be hyper-O-glycosylated in the secretory proteins coded by eight fungal genomes. BMC Microbiol 12(1):213 | Computational analysis , Omics |
| Gosline SJ, et al. (2012) SAMNet: a network-based approach to integrate multi-dimensional high throughput datasets. Integr Biol (Camb) 4(11):1415-27 | Computational analysis , Omics |
| Gossett AJ and Lieb JD (2012) In Vivo Effects of Histone H3 Depletion on Nucleosome Occupancy and Position in Saccharomyces cerevisiae. PLoS Genet 8(6):e1002771 | Omics , Other genomic analysis |
| Griesemer M, et al. (2012) Spatial localisation of chaperone distribution in the endoplasmic reticulum of yeast. IET Syst Biol 6(2):54-63 | Computational analysis , Omics |
| Grigat M, et al. (2012) Multiple histone deacetylases are recruited by corepressor Sin3 and contribute to gene repression mediated by Opi1 regulator of phospholipid biosynthesis in the yeast Saccharomyces cerevisiae. Mol Genet Genomics 287(6):461-72 | Genomic co-immunoprecipitation study , Omics |
| Grun B, et al. (2012) Modelling time course gene expression data with finite mixtures of linear additive models. Bioinformatics 28(2):222-8 | Computational analysis , Omics |
| Grzegorczyk M and Husmeier D (2012) A non-homogeneous dynamic bayesian network with sequentially coupled interaction parameters for applications in systems and synthetic biology.LID - 10.1515/1544-6115.1761 [doi]LID - /j/sagmb.2012.11.issue-4/1544-6115.1761/1544-6115.1761.xml [pii] Stat Appl Genet Mol Biol 11(4) | Computational analysis , Omics |
| Gu J, et al. (2012) Robust identification of transcriptional regulatory networks using a Gibbs sampler on outlier sum statistic. Bioinformatics 28(15):1990-7 | Computational analysis , Omics |
| Gudipati RK, et al. (2012) Extensive degradation of RNA precursors by the exosome in wild-type cells. Mol Cell 48(3):409-21 | Omics |
| Gulsoy G, et al. (2012) HIDEN: Hierarchical decomposition of regulatory networks. BMC Bioinformatics 13(1):250 | Computational analysis , Omics |
| Hahn D, et al. (2012) Brr2p-mediated conformational rearrangements in the spliceosome during activation and substrate repositioning. Genes Dev 26(21):2408-21 | Omics |
| Haitani Y, et al. (2012) Identification of an acetate-tolerant strain of Saccharomyces cerevisiae and characterization by gene expression analysis. J Biosci Bioeng 114(6):648-51 | Genomic expression study , Omics |
| Hancioglu B and Tyson JJ (2012) A mathematical model of mitotic exit in budding yeast: the role of polo kinase. PLoS One 7(2):e30810 | Computational analysis , Omics |
| Hansen L, et al. (2012) Differences in local genomic context of bound and unbound motifs. Gene 506(1):125-34 | Computational analysis , Omics |
| Harbi D, et al. (2012) PrionHome: a database of prions and other sequences relevant to prion phenomena. PLoS One 7(2):e31785 | Computational analysis , Omics |
| Harigaya Y and Parker R (2012) Global analysis of mRNA decay intermediates in Saccharomyces cerevisiae. Proc Natl Acad Sci U S A 109(29):11764-9 | Large-scale phenotype analysis , Omics |




