Structural analyses of Cryptosporidium parvum epitopes reveal a novel scheme of decapeptide binding to H-2K.

J Struct Biol

State Key Laboratory of Agricultural Microbiology, College of Veterinary Medicine, Huazhong Agricultural University, Wuhan, PR China. Electronic address:

Published: January 2025

Cryptosporidium has gained much attention as a major cause of diarrhea worldwide. Here, we present the first structure of H-2K complexed with a decapeptide from Cryptosporidium parvum Gp40/15 protein (Gp40/15-VTF10). In contrast to all published structures, the aromatic residue P3-Phe of Gp40/15-VTF10 is anchored in pocket C rather than the canonical Y/F at P5 or P6 reported for octapeptides and nonapeptides. The results of in vitro refolding assays and circular dichroism experiments showed that the side chains of P3 and P5 play key roles in Gp40/15-VTF10 peptide binding. However, functional analysis of decapeptide epitopes revealed that the Gp40/15-VTF10 peptide did not elicit a strong CD8T immune response, whereas the decapeptide epitope MEDLE2-INF10 induced a significant CD8 T-cell response in peptide-immunized C57BL/6 mice. Using a model structure of H-2K-INF10 complex, we found that the antigenic decapeptide INF10 exhibits a completely different conformation, with the aromatic anchors P3F and P7F docked into the D and C pockets, respectively, while similar peptide conformation and hydrogen bond interactions between the peptide and major histocompatibility complex were found in the resolved H-2K-SVF9 complex. As the H-2K molecule predominantly prefers octapeptides with a strong anchor of P5 Y/F (or P6 Y/F for nonapeptides) binding to the C pocket, we propose that P7 Y/F in the C pocket may represent a novel binding mode for decapeptides. The results should increase the accuracy of T-cell epitope prediction and support the development of T-cell epitope vaccines against cryptosporidiosis.

Download full-text PDF

Source
http://dx.doi.org/10.1016/j.jsb.2025.108168DOI Listing

Publication Analysis

Top Keywords

cryptosporidium parvum
8
gp40/15-vtf10 peptide
8
t-cell epitope
8
decapeptide
5
structural analyses
4
analyses cryptosporidium
4
parvum epitopes
4
epitopes reveal
4
reveal novel
4
novel scheme
4

Similar Publications

Structural analyses of Cryptosporidium parvum epitopes reveal a novel scheme of decapeptide binding to H-2K.

J Struct Biol

January 2025

State Key Laboratory of Agricultural Microbiology, College of Veterinary Medicine, Huazhong Agricultural University, Wuhan, PR China. Electronic address:

Cryptosporidium has gained much attention as a major cause of diarrhea worldwide. Here, we present the first structure of H-2K complexed with a decapeptide from Cryptosporidium parvum Gp40/15 protein (Gp40/15-VTF10). In contrast to all published structures, the aromatic residue P3-Phe of Gp40/15-VTF10 is anchored in pocket C rather than the canonical Y/F at P5 or P6 reported for octapeptides and nonapeptides.

View Article and Find Full Text PDF

Background: The determinants of differences in host infectivity among Cryptosporidium species and subtypes are poorly understood. Results from recent comparative genomic studies suggest that gains and losses of multicopy subtelomeric genes encoding insulinase-like proteases (INS-19 and INS-20 in Cryptosporidium parvum and their orthologs in closely related species) may potentially contribute to these differences.

Methodology/principal Findings: In this study, we investigated the expression and biological function of the INS-19 and INS-20 of C.

View Article and Find Full Text PDF

is a common, waterborne gastrointestinal parasite that causes diarrheal disease worldwide. Currently there are no effective therapeutics to treat cryptosporidiosis in at-risk populations. Since natural products are a known source of anti-parasitic compounds, we screened a library of extracts and pure natural product compounds isolated from bacteria and fungi collected from subterranean environments for activity against .

View Article and Find Full Text PDF

Prevalence of , and spp. in diarrhoeic suckling calves from north-western Spain and analysis of their interactions.

Int J Vet Sci Med

January 2025

Galicia (Grupo INVESAGA). Departamento de Patología Animal. Facultad de Veterinaria, Universidade de Santiago de Compostela, Lugo, Spain, Investigación en Sanidad Animal.

Although , and some species are frequently involved in neonatal calf diarrhoea (NCD), detailed studies on their interactions are scarce. Therefore, a cross-sectional study including faecal samples from 404 diarrhoeic calves aged 0-30 days was performed. oocysts and cysts were detected by immunofluorescence antibody test and positive samples were molecularly characterized.

View Article and Find Full Text PDF

Molecular characterization and zoonotic risk assessment of spp. in Philippine bats.

Food Waterborne Parasitol

March 2025

Laboratory of Sustainable Animal Environment, Graduate School of Agricultural Science, Tohoku University, Osaki, Miyagi, Japan.

is a genus of parasitic protozoa known to cause diarrheal disease that impacts both humans and animals through infection of various vertebrate species. Bats are recognized as reservoirs for zoonotic pathogens, including . The Philippines, renowned for its rich biodiversity, is home to diverse bat species, providing a unique ecological setting to investigate infection dynamics.

View Article and Find Full Text PDF

Want AI Summaries of new PubMed Abstracts delivered to your In-box?

Enter search terms and have AI summaries delivered each week - change queries or unsubscribe any time!