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Identification of Naegleria fowleri proteins linked to primary amoebic meningoencephalitis
Melissa Jamerson1,2, Jacqueline A Schmoyer1, Jay Park2
1Department of Clinical Laboratory Sciences, Virginia Commonwealth University School of Allied Health Professions, Richmond, VA 23298-0583, USA.
Abstract:
Naegleria fowleri (N. fowleri) causes primary amoebic meningoencephalitis, a rapidly fatal disease of the central nervous system. N. fowleri can exist in cyst, flagellate or amoebic forms, depending on environmental conditions. The amoebic form can invade the brain following introduction into the nasal passages. When applied intranasally to a mouse model, cultured N. fowleri amoebae exhibit low virulence. However, upon serial passage in mouse brain, the amoebae acquire a highly virulent state. In the present study, a proteomics approach was applied to the identification of N. fowleri amoeba proteins whose expression was associated with the highly virulent state in mice. Mice were inoculated intranasally with axenically cultured amoebae or with mouse-passaged amoebae. Examination by light and electron microscopy revealed no morphological differences. However, mouse-passaged amoebae were more virulent in mice as indicated by exhibiting a two log10 titre decrease in median infective dose 50 (ID50). Scatter plot analysis of amoebic lysates revealed a subset of proteins, the expression of which was associated with highly virulent amoebae. MS-MS indicated that this subset contained proteins that shared homology with those linked to cytoskeletal rearrangement and the invasion process. Invasion assays were performed in the presence of a select inhibitor to expand on the findings. The collective results suggest that N. fowleri gene products linked to cytoskeletal rearrangement and invasion may be candidate targets in the management of primary amoebic meningoencephalitis.
Insights
Naegleria fowleri (N. fowleri) becomes highly virulent after mouse brain passage. Proteomics identified proteins linked to cytoskeletal rearrangement and invasion, suggesting potential therapeutic targets for primary amoebic meningoencephalitis.
Area of Science:
- Neuroscience
- Infectious Diseases
- Proteomics
Background:
- Naegleria fowleri causes primary amoebic meningoencephalitis, a fatal CNS disease.
- The virulence of N. fowleri increases significantly after passage in a mouse brain model.
- Understanding the molecular basis of N. fowleri virulence is crucial for developing treatments.
Purpose of the Study:
- To identify N. fowleri proteins associated with increased virulence in a mouse model.
- To investigate the role of specific proteins in the invasion process of N. fowleri.
Main Methods:
- Proteomics analysis of N. fowleri amoebae before and after mouse brain passage.
- Mass spectrometry (MS-MS) for protein identification.
- Invasion assays with inhibitors to validate protein function.
Main Results:
- Mouse-passaged N. fowleri exhibited significantly higher virulence (lower ID50).
- Proteomic analysis revealed a subset of proteins upregulated in virulent amoebae.
- These proteins showed homology to those involved in cytoskeletal rearrangement and cellular invasion.
Conclusions:
- N. fowleri virulence is associated with specific protein expression changes.
- Proteins involved in cytoskeletal dynamics and invasion are key factors in N. fowleri pathogenicity.
- These N. fowleri proteins represent potential therapeutic targets for primary amoebic meningoencephalitis.
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