Abstract
The Helicobacter pylori toxin VacA causes vacuolar degeneration in mammalian cell lines in vitro and plays a key role in peptic ulcer disease. Two alleles, m1 and m2, of the mid-region of the vacA gene have been described, and the m2 cytotoxin always has been described as inactive in the in vitro HeLa cell assay. However, the m2 allele is associated with peptic ulcer and is prevalent in populations in which peptic ulcer and gastric cancer have high incidence. In this paper, we show that, despite the absence of toxicity on HeLa cells, the m2 cytotoxin is able to induce vacuolization in primary gastric cells and in other cell lines such as RK-13. The absence of Hela cell activity is due to an inability to interact with the cell surface, suggesting a receptor-mediated interaction. This result is consistent with the observation that the m2 allele is found in a population that has a high prevalence of peptic ulcer disease and gastric cancer. VacA is the first bacterial toxin described for which the same active subunit can be delivered by different receptor binding domains.
MeSH Terms
Alleles
Bacterial Proteins/genetics,toxicity
Bacterial Toxins/genetics,toxicity
Base Sequence
Cytotoxins/genetics,physiology,toxicity
DNA Primers/genetics
DNA, Bacterial/genetics
Genes, Bacterial
HeLa Cells
Helicobacter pylori/genetics,pathogenicity,physiology
Humans
Peptic Ulcer/etiology,microbiology
Polymerase Chain Reaction
Stomach Neoplasms/etiology,microbiology
Transfection
Vacuoles/drug effects
Virulence
Chemicals
Bacterial Proteins
Bacterial Toxins
Cytotoxins
DNA Primers
DNA, Bacterial
VacA protein, Helicobacter pylori
Authors & Affiliations
10 authors, click to expand affiliations / ORCID
Pagliaccia C
IRIS, Chiron S.p.A., via Fiorentina 1, 53100 Siena, Italy.
de Bernard M
Lupetti P
Ji X
Burroni D
Cover T L
Papini E
Rappuoli R
Telford J L
Reyrat J M
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