Abstract
Fusion of the alkaline phosphatase gene (phoA) which lacks its own signal peptide sequence to the N-terminal region of hlyA, the structural gene for Escherichia coli haemolysin, leads to active alkaline phosphatase (AP). AP activity depends on the length of the N-terminal region of hlyA. An optimum is reached when 100-200 amino acids of HlyA are fused to PhoA but fusion of as little as 13 amino acids of HlyA to PhoA is sufficient to yield appreciable AP activity. When cells are treated with lysozyme most of the AP activity is found associated with the membrane fraction but a substantial amount is also found in the soluble fraction, most of which may represent a periplasmic pool of AP. The soluble portion of AP activity is significantly increased when the cells are disrupted by ultrasonication, which indicates that the fusion proteins are only loosely associated with the membrane and that large parts are already located on the outside of the cytoplasmic membrane. The expected fusion proteins were identified in the soluble and the membrane fractions and their amounts in these fractions correlated well with AP activity.
MeSH Terms
Alkaline Phosphatase/genetics,metabolism
Bacterial Proteins/genetics
Biological Transport
Cell Compartmentation
Escherichia coli/genetics
Hemolysin Proteins/genetics,metabolism
Protein Sorting Signals/genetics
Recombinant Fusion Proteins/genetics,metabolism
Recombinant Proteins/genetics
Structure-Activity Relationship
Chemicals
Bacterial Proteins
Hemolysin Proteins
Protein Sorting Signals
Recombinant Fusion Proteins
Recombinant Proteins
Alkaline Phosphatase
Authors & Affiliations
4 authors, click to expand affiliations / ORCID
Erb K
Vogel M
Wagner W
Goebel W
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