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Published on: November 22, 2024
Cryptosporidium parvum protease INS6 plays an important role in parasite proliferation and pathogenicity
Wei He1,2, Zuwei Yang1, Jing Wang1
1State Key Laboratory for Animal Disease Control and Prevention, Center for Emerging and Zoonotic Diseases, College of Veterinary Medicine, South China Agricultural University, Guangzhou, China.
Background:
Cryptosporidium parvum is a common protozoan pathogen responsible for moderate to severe diarrhea in humans and animals. Parasite invasion and egress cause damage to intestinal epithelial cells, which is mediated by a variety of secretory proteins from several unique organelles, such as micronemes. Previous spatial proteomic analysis has identified insulinase-like protease 6 (INS6) as a putative microneme protein in C. parvum. However, the functional contribution of INS6 to Cryptosporidium pathogenicity remains poorly characterized. In this study, we used genetic manipulation techniques to investigate the expression and biological functions of INS6 in C. parvum.
Methodology/Principal Findings:
The INS6 gene was tagged and deleted in C. parvum using CRISPR/Cas9 technology. The expression of INS6 was determined by immunofluorescence analysis, ultrastructure-expansion microscopy, and immunoelectron microscopy. Endogenous labelling showed low levels of INS6 expression, which is found in C. parvum micronemes and is absent during the male gamont stage. The effect of INS6 deletion on parasite growth and pathogenicity was assessed in vitro using HCT-8 cultures and in vivo by infection of interferon-γ knockout mice. Deletion of the INS6 gene impaired C. parvum proliferation in vitro and significantly reduced the parasite burden in infected mice. In addition, mice infected with the Δins6 strain showed a significant reduction in the intestinal villus-to-crypt ratio, attenuated body weight loss and increased survival rates, compared to those infected with the INS6-3HA strain.
Conclusions/Significance:
These results indicate that INS6 protein is involved in C. parvum proliferation and plays a critical role in modulating the pathogenicity of this zoonotic parasite. Deletion of this gene affects the invasion efficiency and pathogenicity of the parasite.
Insights
Deleting the insulinase-like protease 6 (INS6) gene in Cryptosporidium parvum significantly reduces parasite proliferation and pathogenicity. This study highlights INS6
Area of Science:
- Parasitology
- Molecular Biology
- Infectious Diseases
Background:
- Cryptosporidium parvum is a protozoan pathogen causing diarrhea in humans and animals.
- Secretory proteins from micronemes mediate parasite invasion and egress, damaging intestinal cells.
- Insulinase-like protease 6 (INS6) was identified as a putative microneme protein, but its function was unclear.
Purpose of the Study:
- To investigate the expression and biological functions of INS6 in C. parvum.
- To determine the role of INS6 in parasite proliferation and pathogenicity.
Main Methods:
- CRISPR/Cas9 technology was used to tag and delete the INS6 gene in C. parvum.
- INS6 expression was analyzed using immunofluorescence, ultrastructure-expansion, and immunoelectron microscopy.
- Parasite growth and pathogenicity were assessed in vitro (HCT-8 cultures) and in vivo (interferon-γ knockout mice).
Main Results:
- INS6 is expressed at low levels in C. parvum micronemes and absent during the male gamont stage.
- Deletion of the INS6 gene impaired C. parvum proliferation in vitro and reduced parasite burden in mice.
- Mice infected with the Δins6 strain showed improved health outcomes (reduced villus-crypt ratio, less weight loss, increased survival).
Conclusions:
- INS6 protein is involved in C. parvum proliferation.
- INS6 plays a critical role in modulating the pathogenicity of this zoonotic parasite.
- Gene deletion affects parasite invasion efficiency and overall pathogenicity.
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