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Helicobacter pylori lipopolysaccharide alters ECL cell DNA synthesis via a CD14 receptor and polyamine pathway in
1Gastrointestinal Clinic, University of Cape Town Medical School, Cape Town, South Africa.
Abstract:
Chronic Helicobacter pylori infection is associated with alterations in gastric mucosal cell proliferation. Despite the recognition that bacterial lipopolysaccharide (LPS) is present in biologically active quantities in the gastric mucosa, the mechanisms by which it stimulates cells are largely unknown. We have previously established a gastric enterochromaffin-like (ECL) cell neoplasia model in the African rodent species Mastomys and identified that tumor ECL cell proliferation is associated with polyamine biosynthesis and ornithine decarboxylase (ODC) activity. In addition, we have shown that H. pylori LPS exhibits a specific mitogenic effect on naive ECL cells in vitro. The aim of this study was to evaluate whether H. pylori has a direct effect on tumor ECL cell proliferation in vitro and further to evaluate the possible molecular mechanisms for this effect. ECL cell neoplasia was generated in Mastomys by endogenous hypergastrinemia induced by H(2) blockade (loxtidine 1 g/kg/day) and tumor ECL cells prepared. The DNA synthesis in 24-hour cultured tumor cells was measured by bromodeoxyuridine uptake and ODC activity by (14)CO(2) formation from (14)C-ornithine. The putative LPS receptor, CD14, was evaluated by reverse-transcription polymerase chain reaction. Our results demonstrated: (1) H. pylori LPS (10(-12) to 10(-7) M) stimulated basal DNA synthesis (2.2-fold) with an estimated EC(50) of 10(-10) M; (2) this proliferative response correlated with an increase in ODC activity (1.4-fold, EC(50) approximately 10(-10) M) which could be inhibited by a specific ODC inhibitor, difluoromethyl ornithine, at 10(-9) M; (3) the CD14 receptor was identified in both naive and transformed ECL cells by reverse-transcription polymerase chain reaction, and (4) the effects of LPS were inhibited by blocking the CD14 receptor with its specific monoclonal antibody (1:100). Thus, H. pylori LPS appears to influence tumor ECL cell proliferation by activation of the intracellular polyamine pathway and ODC activity via a CD14 receptor on the ECL cell.
Insights
Helicobacter pylori lipopolysaccharide (LPS) directly stimulates tumor enterochromaffin-like (ECL) cell proliferation in Mastomys models. This effect is mediated by the CD14 receptor, activating polyamine biosynthesis and ornithine decarboxylase (ODC) activity.
Area of Science:
- Gastroenterology
- Cell Biology
- Microbiology
Background:
- Chronic Helicobacter pylori infection alters gastric mucosal cell proliferation.
- Bacterial lipopolysaccharide (LPS) is present in the gastric mucosa, but its cell-stimulating mechanisms are unclear.
- Tumor enterochromaffin-like (ECL) cell proliferation in Mastomys models involves polyamine biosynthesis and ornithine decarboxylase (ODC) activity.
Purpose of the Study:
- To investigate the direct effect of H. pylori LPS on tumor ECL cell proliferation in vitro.
- To elucidate the molecular mechanisms underlying H. pylori LPS-induced tumor ECL cell proliferation.
Main Methods:
- Tumor ECL cells were generated in Mastomys via hypergastrinemia induced by H(2) blockade.
- DNA synthesis was measured by bromodeoxyuridine uptake, and ODC activity by (14)CO(2) formation.
- CD14 receptor expression was assessed using reverse-transcription polymerase chain reaction; its role was evaluated using a specific monoclonal antibody.
Main Results:
- H. pylori LPS (10(-12) to 10(-7) M) significantly stimulated DNA synthesis (2.2-fold increase, EC(50) = 10(-10) M).
- This proliferative response correlated with increased ODC activity (1.4-fold increase, EC(50) ≈ 10(-10) M), inhibitable by difluoromethyl ornithine.
- The CD14 receptor was identified on both naive and transformed ECL cells, and LPS effects were blocked by anti-CD14 antibody.
Conclusions:
- H. pylori LPS directly stimulates tumor ECL cell proliferation in vitro.
- The mechanism involves activation of the intracellular polyamine pathway and ODC activity.
- This process is mediated via the CD14 receptor present on ECL cells.
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