Sequence analysis and characterization of pyruvate kinase from Clonorchis sinensis, a 53.1-kDa homopentamer, implicated immune protective efficacy against clonorchiasis
- PMID: 29121987
- PMCID: PMC5680780
- DOI: 10.1186/s13071-017-2494-9
Sequence analysis and characterization of pyruvate kinase from Clonorchis sinensis, a 53.1-kDa homopentamer, implicated immune protective efficacy against clonorchiasis
Abstract
Background: Clonorchis sinensis, the causative agent of clonorchiasis, is classified as one of the most neglected tropical diseases and affects more than 15 million people globally. This hepatobiliary disease is highly associated with cholangiocarcinoma. As key molecules in the infectivity and subsistence of trematodes, glycolytic enzymes have been targets for drug and vaccine development. Clonorchis sinensis pyruvate kinase (CsPK), a crucial glycolytic enzyme, was characterized in this research.
Results: Differences were observed in the sequences and spatial structures of CsPK and PKs from humans, rats, mice and rabbits. CsPK possessed a characteristic active site signature (IKLIAKIENHEGV) and some unique sites but lacked the N-terminal domain. The predicted subunit molecular mass (Mr) of CsPK was 53.1 kDa. Recombinant CsPK (rCsPK) was a homopentamer with a Mr. of approximately 290 kDa by both native PAGE and gel filtration chromatography. Significant differences in the protein and mRNA levels of CsPK were observed among four life stages of C. sinensis (egg, adult worm, excysted metacercaria and metacercaria), suggesting that these developmental stages may be associated with diverse energy demands. CsPK was widely distributed in adult worms. Moreover, an intense Th1-biased immune response was persistently elicited in rats immunized with rCsPK. Also, rat anti-rCsPK sera suppressed C. sinensis adult subsistence both in vivo and in vitro.
Conclusions: The sequences and spatial structures, molecular mass, and expression profile of CsPK have been characterized. rCsPK was indicated to be a homopentamer. Rat anti-rCsPK sera suppressed C. sinensis adult subsistence both in vivo and in vitro. CsPK is worthy of further study as a promising target for drug and vaccine development.
Keywords: Clonorchis sinensis; Drug target; Excretory/secretory products; Expression profile; Immune response; Pentamer; Pyruvate kinase; Vaccine candidate.
Conflict of interest statement
Ethics approval and consent to participate
SD rats and BALB/c mice were purchased from the animal centre of Sun Yat-sen University and raised carefully according to the National Institutes of Health Guide for the Care and Use of Laboratory Animals. All experimental procedures were authorized by the Animal Care and Use Committee of Sun Yat-sen University (Permit Numbers: SCXK (Guangdong) 2010–0107).
Consent for publication
Not applicable.
Competing interests
The authors declare that they have no competing interests.
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- 2017YFD0501300/the national key research and development program of China
- 2016A050502008/the Science and Technology Planning Project of Guangdong Province
- 16ykpy06/the Young Teachers' Cultivation Project of Basic Scientific Research Service Fee in Colleges and Universities
- 81772212/the National Natural Science Foundation of China
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