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Full Capacity of Recombinant Escherichia coli Heat-Stable Enterotoxin Fusion Proteins for Extracellular Secretion, Antigenicity, Disulfide Bond Formation, and Activity
- Source :
- Infection and Immunity, Infection and Immunity, American Society for Microbiology, 2000, 68 (7), pp.4064-74, Infection and Immunity, 2000, 68 (7), pp.4064-74
- Publication Year :
- 2000
- Publisher :
- American Society for Microbiology, 2000.
-
Abstract
- We have successfully used the major subunit ClpG of Escherichia coli CS31A fimbriae as an antigenic and immunogenic exposure-delivery vector for various heterologous peptides varying in nature and length. However, the ability of ClpG as a carrier to maintain in vitro and in vivo the native biological properties of passenger peptide has not yet been reported. To address this possibility, we genetically fused peptides containing all or part of the E. coli human heat-stable enterotoxin (STh) sequence to the amino or carboxyl ends of ClpG. Using antibodies to the ClpG and STh portions for detecting the hybrids; AMS (4-acetamido-4′-maleimidylstilbene-2,2′-disulfonate), a potent free thiol-trapping reagent, for determining the redox state of STh in the fusion; and the suckling mouse assay for enterotoxicity, we demonstrated that all ClpG-STh proteins were secreted in vitro and in vivo outside the E. coli cells in a heat-stable active oxidized (disulfide-bonded) form. Indeed, in contrast to many earlier studies, blocking the natural NH 2 or COOH extremities of STh had, in all cases, no drastic effect on cell release and toxin activity. Only antigenicity of STh C-terminally extended with ClpG was strongly affected in a conformation-dependent manner. These results suggest that the STh activity was not altered by the chimeric structure, and therefore that, like the natural toxin, STh in the fusion had a spatial structure flexible enough to be compatible with secretion and enterotoxicity (folding and STh receptor recognition). Our study also indicates that disulfide bonds were essential for enterotoxicity but not for release, that spontaneous oxidation by molecular oxygen occurred in vitro in the medium, and that the E. coli cell-bound toxin activity in vivo resulted from an effective export processing of hybrids and not cell lysis. None of the ClpG-STh subunits formed hybrid CS31A-STh fimbriae at the cell surface of E. coli , and a strong decrease in the toxin activity was observed in the absence of CS31A helper proteins. In fact, chimeras translocated across the outer membrane as a free folded monomer once they were guided into the periplasm by the ClpG leader peptide through the CS31A-dependent secretory pathway. In summary, ClpG appears highly attractive as a carrier reporter protein for basic and applied research through the engineering of E. coli for culture supernatant delivery of an active cysteine-containing protein, such as the heat-stable enterotoxin.
- Subjects :
- MESH: Oxidation-Reduction
Peptide
MESH: Escherichia coli Proteins
MESH: Adhesins, Escherichia coli
MESH: Base Sequence
medicine.disease_cause
Enterotoxins
Mice
MESH: Enterotoxins
Heat-stable enterotoxin
MESH: Animals
Disulfides
MESH: Bacterial Proteins
chemistry.chemical_classification
0303 health sciences
Adhesins, Escherichia coli
Drug Carriers
MESH: Escherichia coli
Escherichia coli Proteins
Bacterial
Adhesins
MESH: Drug Carriers
Infectious Diseases
[SDV.MP]Life Sciences [q-bio]/Microbiology and Parasitology
Biochemistry
Microbial Immunity and Vaccines
Bacterial outer membrane
Oxidation-Reduction
Signal peptide
MESH: DNA Primers
Antigenicity
Recombinant Fusion Proteins
Immunology
Bacterial Toxins
Biology
Microbiology
Cell Line
03 medical and health sciences
Bacterial Proteins
[SDV.BBM] Life Sciences [q-bio]/Biochemistry, Molecular Biology
medicine
MESH: Recombinant Fusion Proteins
Escherichia coli
Animals
Humans
Secretion
MESH: Disulfides
[SDV.BBM]Life Sciences [q-bio]/Biochemistry, Molecular Biology
Antigens
[SDV.MP] Life Sciences [q-bio]/Microbiology and Parasitology
MESH: Mice
030304 developmental biology
DNA Primers
Antigens, Bacterial
MESH: Humans
Base Sequence
030306 microbiology
Fusion protein
MESH: Cell Line
chemistry
MESH: Bacterial Toxins
Parasitology
MESH: Antigens, Bacterial
Subjects
Details
- Language :
- English
- ISSN :
- 00199567 and 10985522
- Database :
- OpenAIRE
- Journal :
- Infection and Immunity, Infection and Immunity, American Society for Microbiology, 2000, 68 (7), pp.4064-74, Infection and Immunity, 2000, 68 (7), pp.4064-74
- Accession number :
- edsair.doi.dedup.....70864ba6e2e011611d871ebfb0f97fd9