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A Rapid Image-based Bacterial Virulence Assay Using Amoeba
Published on: June 27, 2018
Identification of peptidases in highly pathogenic vs. weakly pathogenic Naegleria fowleri amebae
Ishan K Vyas1, Melissa Jamerson, Guy A Cabral
1Department of Microbiology and Immunology, School of Medicine, Virginia Commonwealth University, Richmond, Virginia, 23298.
Abstract:
Naegleria fowleri, a free-living ameba, is the causative agent of Primary Amebic Meningoencephalitis. Highly pathogenic mouse-passaged amebae (Mp) and weakly pathogenic axenically grown (Ax) N. fowleri were examined for peptidase activity. Zymography and azocasein peptidase activity assays demonstrated that Mp and Ax N. fowleri exhibited a similar peptidase pattern. Prominent for whole cell lysates, membranes and conditioned medium (CM) from Mp and Ax amebae was the presence of an activity band of approximately 58 kDa that was sensitive to E64, a cysteine peptidase inhibitor. However, axenically grown N. fowleri demonstrated a high level of this peptidase activity in membrane preparations. The inhibitor E64 also reduced peptidase activity in ameba-CM consistent with the presence of secreted cysteine peptidases. Exposure of Mp amebae to E64 reduced their migration through matrigel that was used as an extracellular matrix, suggesting a role for cysteine peptidases in invasion of the central nervous system (CNS). The collective results suggest that the profile of peptidases is not a discriminative marker for distinguishing Mp from Ax N. fowleri. However, the presence of a prominent level of activity for cysteine peptidases in N. fowleri membranes and CM, suggests that these enzymes may serve to facilitate passage of the amebae into the CNS.
Insights
Naegleria fowleri
Area of Science:
- Microbiology
- Parasitology
- Biochemistry
Background:
- Naegleria fowleri causes Primary Amebic Meningoencephalitis.
- Pathogenic (Mp) and weakly pathogenic (Ax) N. fowleri strains were analyzed.
- Peptidase activity was investigated to understand virulence.
Purpose of the Study:
- To characterize peptidase activity in different N. fowleri strains.
- To determine the role of peptidases in CNS invasion.
- To identify potential therapeutic targets.
Main Methods:
- Zymography and azocasein peptidase activity assays were performed.
- Peptidase activity was assessed in whole cell lysates, membranes, and conditioned medium.
- The effect of E64, a cysteine peptidase inhibitor, was evaluated.
Main Results:
- Both Mp and Ax N. fowleri showed similar peptidase patterns.
- A prominent 58 kDa cysteine peptidase activity was found in all N. fowleri preparations.
- E64 inhibited peptidase activity and reduced Mp amebae migration through matrigel.
Conclusions:
- Peptidase profiles do not distinguish between Mp and Ax N. fowleri.
- Cysteine peptidases in N. fowleri membranes and CM may facilitate CNS invasion.
- Cysteine peptidases are potential targets for treating Primary Amebic Meningoencephalitis.
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