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  1. Quantitative analysis of the Escherichia coli proteome
  2. Astrocyte‐neuron crosstalk regulates the expression and subcellular localization of carbohydrate metabolism enzymes
  3. Multi-enzyme digestion FASP and the ‘Total Protein Approach’-based absolute quantification of the Escherichia coli proteome
  4. Changes in quaternary structure of muscle fructose-1,6-bisphosphatase regulate affinity of the enzyme to mitochondria
  5. Nuclear localization of aldolase A correlates with cell proliferation
  6. The Mechanism of Calcium-Induced Inhibition of Muscle Fructose 1,6-bisphosphatase and Destabilization of Glyconeogenic Complex
  7. Destabilization of fructose 1,6-bisphosphatase–Z-line interactions is a mechanism of glyconeogenesis down-regulation in vivo
  8. A comparative study on the sensitivity of Cyprinus carpio muscle and liver FBPase toward AMP and calcium
  9. Association of C‐terminal region of phosphoglycerate mutase with glycolytic complex regulates energy production in cancer cells
  10. Muscle FBPase binds to cardiomyocyte mitochondria under glycogen synthase kinase‐3 inhibition or elevation of cellular Ca2+ level
  11. Cell cycle-dependent expression and subcellular localization of fructose 1,6-bisphosphatase
  12. The effect of glycogen phosphorolysis on basal glutaminergic transmission
  13. Ubiquitous presence of gluconeogenic regulatory enzyme, fructose-1,6-bisphosphatase, within layers of rat retina
  14. Muscle FBPase is targeted to nucleus by its 203KKKGK207 sequence
  15. Phosphoglycerate mutase in mammalian striated muscles: Subcellular localization and binding partners
  16. Nuclear targeting of FBPase in HL-1 cells is controlled by beta-1 adrenergic receptor-activated Gs protein signaling cascade
  17. Evolutionary conserved N‐terminal region of human muscle fructose 1,6‐bisphosphatase regulates its activity and the interaction with aldolase
  18. The origin of the high sensitivity of muscle fructose 1,6‐bisphosphatase towards AMP
  19. Nuclear Localization of Fructose 1,6-bisphosphatase in Smooth Muscle Cells
  20. The regulation of the interaction between F-actin and muscle fructose 1,6-bisphosphatase
  21. The effect of calcium ions on subcellular localization of aldolase–FBPase complex in skeletal muscle
  22. Interaction between Muscle Aldolase and Muscle Fructose 1,6-Bisphosphatase Results in the Substrate Channeling
  23. Colocalization of muscle FBPase and muscle aldolase on both sides of the Z-line
  24. Muscle FBPase in a complex with muscle aldolase is insensitive to AMP inhibition
  25. Different Sensitivities of Mutants and Chimeric Forms of Human Muscle and Liver Fructose- 1,6-Bisphosphatases towards AMP
  26. Kinetic properties of pig (Sus scrofa domestica) and bovine (Bos taurus) D-fructose-1,6-bisphosphate 1-phosphohydrolase (F1,6BPase)
  27. Muscle Aldolase Decreases Muscle FBPase Sensitivity toward AMP Inhibition
  28. cDNA Sequence and Kinetic Properties of Human Lung Fructose(1,6)bisphosphatase