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Comprehensive quantitative analysis of central carbon and amino-acid metabolism in Saccharomyces cerevisiae under multiple conditions by targeted proteomics., , , , , , and . Molecular systems biology, (Feb 1, 2011)Metabolic functions of duplicate genes in Saccharomyces cerevisiae., , and . Genome research, 15 (10): 1421--1430 (October 2005)Differential glucose repression in common yeast strains in response to HXK2 deletion, , , , , , , , and . FEMS Yeast Research, 10 (3): 322--332 (Jan 22, 2010)Coordination of microbial metabolism, , , and . Nat Rev Micro, 12 (5): 327--340 (May 24, 2014)Global probabilistic annotation of metabolic networks enables enzyme discovery, , , , and . Nat Chem Biol, 8 (10): 848--854 (Oct 9, 2012)Transcriptional regulation is insufficient to explain substrate-induced flux changes in Bacillus subtilis, , , , , , , , and . Mol. Syst. Biol., (2013)Global network reorganization during dynamic adaptations of Bacillus subtilis metabolism, , , , , , , , , and 41 other author(s). Science, (2012)Ubiquinone accumulation improves osmotic-stress tolerance in Escherichia coli, and . Nat. Chem. Biol., (2014)Metabolic networks in motion: 13C-based flux analysis. Mol. Syst. Biol., (2006)Collisional fragmentation of central carbon metabolites in LC-MS/MS increases precision of \textbackslashtextonesuperior\textbackslashtextthreesuperiorC metabolic flux analysis, , , , , and . Biotechnol. Bioeng., (2012)