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Porphyromonas somerae Invasion of Endometrial Cancer Cells
Taylor A Crooks1,2, Joseph D Madison1,3,4, Dana M Walsh1
1Microbiome Program, Center for Individualized Medicine, Mayo Clinic, Rochester, MN, United States.
Abstract:
Recent evidence suggests an association between endometrial cancer and the understudied bacterial species Porphyromonas somerae. This association was demonstrated in previous work that indicated a significantly enriched abundance of P. somerae in the uterine microbiome of endometrial cancer patients. Given the known associations of the Porphyromonas genus and oral cancer, we hypothesized that P. somerae may play a similar pathogenic role in endometrial cancer via intracellular activity. Before testing our hypothesis, we first characterized P. somerae biology, as current background data is limited. These novel characterizations include growth curves in liquid medium and susceptibility tests to antibiotics. We tested our hypothesis by examining growth changes in response to 17β-estradiol, a known risk factor for endometrial cancer, followed by metabolomic profiling in the presence and absence of 17β-estradiol. We found that P. somerae exhibits increased growth in the presence of 17β-estradiol of various concentrations. However, we did not find significant changes in metabolite levels in response to 17β-estradiol. To study direct host-microbe interactions, we used in vitro invasion assays under hypoxic conditions and found evidence for intracellular invasion of P. somerae in endometrial adenocarcinoma cells. We also examined these interactions in the presence of 17β-estradiol but did not observe changes in invasion frequency. Invasion was shown using three lines of evidence including visualization via differential staining and brightfield microscopy, increased frequency of bacterial recovery after co-culturing, and in silico methods to detail relevant genomic and transcriptomic components. These results underscore potential intracellular phenotypes of P. somerae within the uterine microbiome. Furthermore, these results raise new questions pertaining to the role of P. somerae in the progression of endometrial cancer.
Insights
Porphyromonas somerae bacteria show increased growth with 17β-estradiol and can invade endometrial cells, suggesting a potential role in endometrial cancer progression. Further research is needed to understand this association.
Area of Science:
- Microbiology
- Gynecologic Oncology
- Bacteriology
Background:
- Endometrial cancer is linked to the understudied bacterium *Porphyromonas somerae*.
- Previous studies show *P. somerae* is abundant in the uterine microbiome of endometrial cancer patients.
- The *Porphyromonas* genus is associated with oral cancer, suggesting a similar pathogenic role for *P. somerae* in endometrial cancer.
Purpose of the Study:
- To characterize *Porphyromonas somerae* biology due to limited existing data.
- To investigate the hypothesis that *P. somerae* plays a pathogenic role in endometrial cancer via intracellular activity.
- To examine the influence of 17β-estradiol, an endometrial cancer risk factor, on *P. somerae* growth and invasion.
Main Methods:
- Characterized *P. somerae* growth curves and antibiotic susceptibility.
- Assessed *P. somerae* growth in response to 17β-estradiol and performed metabolomic profiling.
- Conducted *in vitro* invasion assays of endometrial adenocarcinoma cells under hypoxic conditions, with and without 17β-estradiol.
- Utilized microscopy, bacterial recovery, and *in silico* analyses to confirm intracellular invasion.
Main Results:
- *P. somerae* demonstrated increased growth in the presence of various concentrations of 17β-estradiol.
- No significant changes in metabolite levels were observed in response to 17β-estradiol.
- *P. somerae* was found to invade endometrial adenocarcinoma cells *in vitro*.
- 17β-estradiol did not alter the frequency of *P. somerae* invasion.
Conclusions:
- *P. somerae* exhibits potential intracellular pathogenic phenotypes within the uterine microbiome.
- The bacterium's growth is enhanced by 17β-estradiol, a known endometrial cancer risk factor.
- These findings raise new questions about the role of *P. somerae* in endometrial cancer progression.
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