Abstract
1. Alkaline phosphatase of Escherichia coli undergoes below pH 6.0 a reversible acid inactivation that has been studied and related to the extent of uptake of inorganic phosphate occurring below pH 6.0. 2. The rate of inactivation is rapid in the first few minutes but later it decreases markedly. Temperature, pH, composition of buffer and other factors have an important effect on the inactivation. 3. About 60% of the activity lost at pH values above 3.5 is rapidly recovered when the enzyme is taken back to pH 8.0, independently (within certain limits) of the extent of the inactivation. 4. Phosphate and Zn(2+), although very good protectors of the inactivation by acid, are not by themselves able to reverse the acid inactivation. 5. Inorganic phosphate seems not to be incorporated into the acid-inactivated enzyme. 6. Incorporation of more than one mole of phosphate/mole of enzyme has been obtained, but the phosphate residues seem to be incorporated to serine residues with a common sequence, suggesting two identical active serine residues/molecule of active enzyme.
Keywords
ALKALINE PHOSPHATASE
CATALYSIS
ENZYME INHIBITORS
ESCHERICHIA COLI
EXPERIMENTAL LAB STUDY
HYDROGEN-ION CONCENTRATION
KINETICS
PHOSPHATES
PHOSPHORUS METABOLISM
RADIOAUTOGRAPHY
SERINE
ZINC
MeSH Terms
Alkaline Phosphatase
Autoradiography
Catalysis
Enzyme Inhibitors
Escherichia coli
Hydrogen-Ion Concentration
Kinetics
Organophosphates
Phosphates
Phosphorus/metabolism
Research
Serine
Zinc
Chemicals
Enzyme Inhibitors
Organophosphates
Phosphates
Phosphorus
Serine
Alkaline Phosphatase
Zinc
Authors & Affiliations
2 authors, click to expand affiliations / ORCID
PIGRETTI M M
MILSTEIN C
References (12)
12 references, click to expand
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