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Microbiol Spectr ; 9(1): e0022821, 2021 09 03.
Article in English | MEDLINE | ID: mdl-34479414

ABSTRACT

Microneme proteins (MICs) of Eimeria tenella play key roles in motility, migration, attachment, and invasion processes. More than 20 apicomplexan parasite's MICs have been identified, with nine Eimeria MICs being reported. In this study, a novel E. tenella MIC was identified, and its gene structural features, developmental expression levels, localization, role in adhesion and invasion, and immunogenicity were studied. The results showed that the open reading frame was 1,650 bp, encoding 550 amino acids. It contains a signal sequence, a transmembrane region, four low-complexity boxes, and five epidermal growth factor-like domains (EGF). Subcellular localization revealed its distribution on the membrane surface of the parasite. These characteristics are consistent with the common features of MICs and are named EtMIC8. Anti-EtMIC8 antibodies recognized a specific binding of about 100 kDa in E. tenella, which was twice as large as the prokaryotic expression (about 50 kDa), suggesting that MIC8 may exist naturally as a dimer. EtMIC8 was expressed at higher levels in sporozoites (3.08-fold) and merozoites (2.1-fold) than in sporulated oocysts. The attachment assays using a yeast surface display of MIC8 and its different domains showed that the adherence rates of EtMIC8 to host cells were significantly higher than those of the control (3.17-fold), which was the full contribution of EGF, but neither was alone. Anti-EtMIC8 antibodies significantly reduced the invasion rate of sporozoites into host cells compared to those of the control (P < 0.01). Recombinant EtMIC8-EGF peptides could provide moderate protective efficacy (anticoccidial index [ACI]: 169.7), induce humoral responses, and upregulate CD3+CD8+ lymphocyte cells.


Subject(s)
Coccidiosis/veterinary , Eimeria tenella/genetics , Microneme/immunology , Amino Acid Sequence , Animals , Antibodies, Protozoan/immunology , Chickens , Coccidiosis/immunology , Coccidiosis/parasitology , Eimeria tenella/chemistry , Eimeria tenella/growth & development , Eimeria tenella/immunology , Microneme/chemistry , Microneme/genetics , Open Reading Frames , Poultry Diseases/immunology , Poultry Diseases/parasitology , Protein Domains , Protein Transport , Protozoan Proteins/chemistry , Protozoan Proteins/genetics , Protozoan Proteins/immunology , Sequence Alignment
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