Primary Literature
Literature that either focuses on the pathway or contains information about
function, regulation, or biological role of the pathway.
3
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Xie D, et al. (2024)
Effects of Ca2+ signal on the activities of key enzymes and expression of related genes in yeast ethanol metabolism and mitochondrial function during high sugar fermentation. J Sci Food Agric 104(9):5077-5088
PMID: 38284794
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Xie T, et al. (2022)
Multi-omics analyses of the transition to the Crabtree effect in S. cerevisiae reveals a key role for the citric acid shuttle. FEMS Yeast Res 22(1)
PMID: 35595470
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Tran-Dinh S, et al. (1996)
Mathematical model for evaluating the Krebs cycle flux with non-constant glutamate-pool size by 13C-NMR spectroscopy. Evidence for the existence of two types of Krebs cycles in cells. Eur J Biochem 242(2):220-7
PMID: 8973636
Additional Literature
Papers that show experimental evidence for the pathway, but for which the
pathway is not the paper’s principal focus.
6
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Justinić I, et al. (2020)
Combining proteomics and lipid analysis to unravel Confidor stress response in Saccharomyces cerevisiae. Environ Toxicol 35(3):346-358
PMID: 31696623
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Røst LM, et al. (2020)
Absolute Quantification of the Central Carbon Metabolome in Eight Commonly Applied Prokaryotic and Eukaryotic Model Systems. Metabolites 10(2)
PMID: 32093075
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Sévin DC, et al. (2016)
Global Metabolic Responses to Salt Stress in Fifteen Species. PLoS One 11(2):e0148888
PMID: 26848578
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Orlandi I, et al. (2014)
Rewiring yeast acetate metabolism through MPC1 loss of function leads to mitochondrial damage and decreases chronological lifespan. Microb Cell 1(12):393-405
PMID: 28357219
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Yan H, et al. (2014)
[Metabolomics analysis of taxadiene producing yeasts]. Sheng Wu Gong Cheng Xue Bao 30(2):223-31
PMID: 24941744
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Albers E, et al. (1998)
Distribution of 14C-labelled carbon from glucose and glutamate during anaerobic growth of Saccharomyces cerevisiae. Microbiology (Reading) 144 ( Pt 6):1683-1690
PMID: 9639938