Sugar transport by the bacterial phosphotransferase system. Studies on the molecular weight and association of enzyme I.
Author:
Publisher
Elsevier BV
Subject
Cell Biology,Molecular Biology,Biochemistry
Reference40 articles.
1. Sugar transport by the bacterial phosphotransferase system. Isolation and characterization of enzyme I from Salmonella typhimurium.
2. Sugar Transport
3. The staphylococcal pep dependent phosphotransferase system: Demonstration of a phosphorylated intermediate of the enzyme 1 component
4. The bacterial phosphoenolpyruvate: Sugar phosphotransferase system
5. Escherichia coli phosphoenolpyruvate-dependent phosphotransferase system. Evidence that the dimer is the active form of enzyme I
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1. How Phosphotransferase System-Related Protein Phosphorylation Regulates Carbohydrate Metabolism in Bacteria;Microbiology and Molecular Biology Reviews;2006-12
2. The Monomer/Dimer Transition of Enzyme I of the Escherichia coli Phosphotransferase System;Journal of Biological Chemistry;2006-06
3. Mechanism-based Inhibition of Enzyme I of the Escherichia coli Phosphotransferase System;Journal of Biological Chemistry;2002-03
4. Enzyme I of the Phosphoenolpyruvate:Sugar Phosphotransferase System. In Vitro Intragenic Complementation: The Roles of Arg126 in Phosphoryl Transfer and the C-Terminal Domain in Dimerization;Biochemistry;2000-03-07
5. Enzyme INtr from Escherichia coli;Journal of Biological Chemistry;1999-09
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