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Updated: Jan 20, 2026

Studying Inherited Immunity in a Caenorhabditis elegans Model of Microsporidia Infection
Published on: April 6, 2022
Microsporidia Interact with Host Cell Mitochondria via Voltage-Dependent Anion Channels Using Sporoplasm Surface
Bing Han1, Yanfen Ma1, Vincent Tu1
1Department of Pathology, Albert Einstein College of Medicine, New York, USA.
Abstract:
Microsporidia are opportunistic intracellular pathogens that can infect a wide variety of hosts ranging from invertebrates to vertebrates. During invasion, the microsporidian polar tube pushes into the host cell, creating a protective microenvironment, the invasion synapse, into which the sporoplasm extrudes. Within the synapse, the sporoplasm then invades the host cell, forming a parasitophorous vacuole (PV). Using a proteomic approach, we identified Encephalitozoon hellem sporoplasm surface protein 1 (EhSSP1), which localized to the surface of extruded sporoplasms. EhSSP1 was also found to interact with polar tube protein 4 (PTP4). Recombinant EhSSP1 (rEhSSP1) bound to human foreskin fibroblasts, and both anti-EhSSP1 and rEhSSP1 caused decreased levels of host cell invasion, suggesting that interaction of SSP1 with the host cell was involved in invasion. Coimmunoprecipitation (Co-IP) followed by proteomic analysis identified host cell voltage-dependent anion channels (VDACs) as EhSSP1 interacting proteins. Yeast two-hybrid assays demonstrated that EhSSP1 was able to interact with VDAC1, VDAC2, and VDAC3. rEhSSP1 colocalized with the host mitochondria which were associated with microsporidian PVs in infected cells. Transmission electron microscopy revealed that the outer mitochondrial membrane interacted with meronts and the PV membrane, mitochondria clustered around meronts, and the VDACs were concentrated at the interface of mitochondria and parasite. Knockdown of VDAC1, VDAC2, and VDAC3 in host cells resulted in significant decreases in the number and size of the PVs and a decrease in mitochondrial PV association. The interaction of EhSSP1 with VDAC probably plays an important part in energy acquisition by microsporidia via its role in the association of mitochondria with the PV.IMPORTANCE Microsporidia are important opportunistic human pathogens in immune-suppressed individuals, such as those with HIV/AIDS and recipients of organ transplants. The sporoplasm is critical for establishing microsporidian infection. Despite the biological importance of this structure for transmission, there is limited information about its structure and composition that could be targeted for therapeutic intervention. Here, we identified a novel E. hellem sporoplasm surface protein, EhSSP1, and demonstrated that it can bind to host cell mitochondria via host VDAC. Our data strongly suggest that the interaction between SSP1 and VDAC is important for the association of mitochondria with the parasitophorous vacuole during microsporidian infection. In addition, binding of SSP1 to the host cell is associated with the final steps of invasion in the invasion synapse.
Insights
Microsporidia use EhSSP1 to bind host cell mitochondria via VDACs, aiding parasite invasion and energy acquisition. This interaction is crucial for parasitophorous vacuole development and host cell infection by Encephalitozoon hellem.
Area of Science:
- Microbiology
- Cell Biology
- Parasitology
Background:
- Microsporidia are opportunistic intracellular pathogens infecting diverse hosts.
- The sporoplasm is essential for microsporidian host cell invasion.
- Limited knowledge exists on sporoplasm surface proteins and their roles in infection.
Purpose of the Study:
- To identify and characterize novel Encephalitozoon hellem sporoplasm surface proteins.
- To investigate the interaction of identified proteins with host cell components.
- To elucidate the role of these interactions in microsporidian invasion and pathogenesis.
Main Methods:
- Proteomic analysis to identify sporoplasm surface proteins (EhSSP1).
- Co-immunoprecipitation and yeast two-hybrid assays to identify interacting partners (VDACs).
- Recombinant protein binding assays, microscopy, and gene knockdown studies.
Main Results:
- Identified EhSSP1 on extruded sporoplasms, interacting with polar tube protein 4.
- Demonstrated EhSSP1 binds to host cell VDACs (VDAC1, VDAC2, VDAC3).
- Showed EhSSP1-VDAC interaction facilitates mitochondrial association with the parasitophorous vacuole, impacting PV formation and parasite growth.
Conclusions:
- EhSSP1 is a key microsporidian surface protein involved in host cell invasion.
- The EhSSP1-VDAC interaction is critical for parasite energy acquisition by linking host mitochondria to the PV.
- Targeting the EhSSP1-VDAC interaction could offer a therapeutic strategy against microsporidian infections.
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