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Results 1 - 10 of 17 > >>
EC Number General Information Commentary Reference
Show all pathways known for 2.3.1.54Display the word mapDisplay the reaction diagram Show all sequences 2.3.1.54malfunction an enzyme-deletion mutant reveals a 60% decrease in invasion efficiency when compared to the wild type -, 757504
Show all pathways known for 2.3.1.54Display the word mapDisplay the reaction diagram Show all sequences 2.3.1.54malfunction mutation of either pflB, which codes for PFL, or pflA, which codes for pyruvate formate lyase activating enzyme, results in abrogation of mixed acid fermentation on galactose, and leads to a decrease in pneumococcal virulence 746477
Show all pathways known for 2.3.1.54Display the word mapDisplay the reaction diagram Show all sequences 2.3.1.54metabolism anaerobic fermentation pathway yielding 3 ATP per glucose, pyruvate channeling to fermentation product, lactate dehydrogenase and pyruvate dehydrogenase are alternative pyruvate channeling enzymes during fermentation 701826
Show all pathways known for 2.3.1.54Display the word mapDisplay the reaction diagram Show all sequences 2.3.1.54metabolism anaerobic glucose metabolism, direct link between fermentative metabolism and virulence in infected mice 704002
Show all pathways known for 2.3.1.54Display the word mapDisplay the reaction diagram Show all sequences 2.3.1.54metabolism multiple regulators control the transcription of pflA and pflB, some of these regulators are induced by galactose, their control over pflA and pflB is influenced by sodium formate, they exert regulatory influence on each other, and are required for pneumococcal colonization and virulence. Transcriptional profile of mutant DELTApflB compared to the wild-type D39 strain, expression of seven genes annotated as transcriptional regulators is either significantly up or downregulated in the mutant, overview. CcpA, GlnR, and GntR interact with the putative promoters of pflA and pflB, impact of formate on binding affinity of CcpA and GlnR 746477
Show all pathways known for 2.3.1.54Display the word mapDisplay the reaction diagram Show all sequences 2.3.1.54metabolism NADH generated from anaerobic glycerol metabolism in the absence of fumarate is oxidized through the pyruvate formate-lyase-ethanol fermentation pathway. Thus, the enzyme is essential to avoid the accumulation of excess NADH during fumarate-independent anaerobic glycerol metabolism -, 736361
Show all pathways known for 2.3.1.54Display the word mapDisplay the reaction diagram Show all sequences 2.3.1.54metabolism the enzyme can serve as a sole route for microbial growth on acetate and formate 756036
Show all pathways known for 2.3.1.54Display the word mapDisplay the reaction diagram Show all sequences 2.3.1.54metabolism the enzyme catalyzes the conversion of pyruvate and CoA to formate and acetyl-CoA during anaerobic glucose metabolism 757586
Show all pathways known for 2.3.1.54Display the word mapDisplay the reaction diagram Show all sequences 2.3.1.54metabolism the enzyme takes part in the metabolic pathway of pyruvate to ethanol in Thermoanaerobacterium saccharolyticum -, 735819
Show all pathways known for 2.3.1.54Display the word mapDisplay the reaction diagram Show all sequences 2.3.1.54physiological function anaerobic alkane degradation in Archaeoglobus fulgidus may involve the gene pflD in alkane activation through addition to fumarate 736285
Results 1 - 10 of 17 > >>