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Porphyromonas gingivalis as a Model Organism for Assessing Interaction of Anaerobic Bacteria with Host Cells
Published on: December 17, 2015
Exposure of P. gingivalis to noradrenaline reduces bacterial growth and elevates ArgX protease activity
Takayuki Saito1, Satoru Inagaki, Kaoru Sakurai
1Oral Health Science Center, Tokyo Dental College, 1-2-2 Masago, Mihama-ku, Chiba, Japan.
Objective:
Periodontitis, an infectious disease caused by periodontopathic bacteria, including Porphyromonas gingivalis, is reported to be accelerated by stress, under which noradrenaline levels are increased in the bloodstream. The purpose of this study was to evaluate the effects of noradrenaline on P. gingivalis.
Design:
P. gingivalis was incubated in the presence of 25μM, 50μM, or 100μM adrenaline or noradrenaline at 37°C for 12, 24 or 36h and growth was evaluated by OD(660). Auto-inducer-2 (AI-2) was measured by luminescence of Vibrio harveyi BB 170. Expression of P. gingivalis genes was evaluated using a microarray and RT-PCR. Rgp activity of arg-gingipainA and B (Rgp) was measured with a synthetic substrate.
Results:
Growth of P. gingivalis FDC381 was inhibited by noradrenaline at 24 and 36h. Growth inhibition by noradrenaline increased dose-dependently. Inhibition of growth partially recovered with addition of propranolol. AI-2 production from P. gingivalis showed a marked decrease with addition of noradrenaline compared with peak production levels in the control group. Microarray analysis revealed an increase in expression in 18 genes and a decrease in expression in 2 genes. Amongst these genes, expression of the protease arg-gingipainB (RgpB) gene, a major virulence factor of P. gingivalis, was further analysed. Expression of rgpB showed a significant increase with addition of noradrenaline, which was partially reduced by addition of propranolol. Cell-associated Rgp activity also increased with addition of noradrenaline.
Conclusions:
These results suggest that stressors influence the expression of the virulence factors of P. gingivalis via noradrenaline.
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