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2.7.1.191: protein-Npi-phosphohistidine-D-mannose phosphotransferase

This is an abbreviated version!
For detailed information about protein-Npi-phosphohistidine-D-mannose phosphotransferase, go to the full flat file.

Word Map on EC 2.7.1.191

Reaction

[protein]-Npi-phospho-L-histidine
+
D-mannose[side 1]
=
[protein]-L-histidine
+
D-mannose 6-phosphate[side 2]

Synonyms

CD2775, D-glucosaminate PTS permease component EIIA, D-glucosaminate PTS permease component EIIB, D-glucosaminate PTS permease component EIIC, D-glucosaminate PTS permease component EIID, dgaABCD, EC 2.7.1.69, EII, EII man, EII(t)Man, EIIABCDman, EIIMan, EIItMan, EIItMan phosphotransferase system permease, enzyme II, Enzyme II Man, enzyme IIMan, glucose/mannose-phosphotransferase system permease, II-AMan, II-BMan, II-MMan, II-PMan, IIAB protein, IIABLMan, IIABMan, IIAMan, IIAmannose, IIBMan, IIBmannose, IICMan, IICmannose, IIDMan, IIDmannose, IIIMan, IIMan, Man-PTS, man-PTS EII, ManA, ManB, ManC, manL, manLMN, manN, mannose enzyme II, mannose family phosphotransferase system permease, mannose permease, mannose permease IID, mannose phosphotransferase system, mannose PTS, mannose PTS permease, mannose transporter, mannose-specific Enzyme II, mannose-specific phosphotransferase system component IID, mannose-specific PTS, mannosyl-1-phosphotransferase, ManPT, manR, ManX, manXYZ, ManY, ManZ, MptA, MptC, MptD, permease IIC, phosphoenolpyruvate-dependent phosphotransferase system, protein enzyme II, ptnABCD, PTS permease, ptsL pel/ptsM, ptsLPM, ptsM

ECTree

     2 Transferases
         2.7 Transferring phosphorus-containing groups
             2.7.1 Phosphotransferases with an alcohol group as acceptor
                2.7.1.191 protein-Npi-phosphohistidine-D-mannose phosphotransferase

Systematic Name

Systematic Name on EC 2.7.1.191 - protein-Npi-phosphohistidine-D-mannose phosphotransferase

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SYSTEMATIC NAME
IUBMB Comments
protein-Npi-phospho-L-histidine:D-mannose Npi-phosphotransferase
This enzyme is a component (known as enzyme II) of a phosphoenolpyruvate (PEP)-dependent, sugar transporting phosphotransferase system (PTS). The system, which is found only in prokaryotes, simultaneously transports its substrate from the periplasm or extracellular space into the cytoplasm and phosphorylates it. The phosphate donor, which is shared among the different systems, is a phospho-carrier protein of low molecular mass that has been phosphorylated by EC 2.7.3.9 (phosphoenolpyruvate---protein phosphotransferase). Enzyme II, on the other hand, is specific for a particular substrate, although in some cases alternative substrates can be transported with lower efficiency. The reaction involves a successive transfer of the phosphate group to several amino acids within the enzyme before the final transfer to the substrate.