» Articles » PMID: 38049816

Molecular and Functional Characterization of Schistosoma Japonicum Annexin A13

Overview
Journal Vet Res
Publisher Biomed Central
Date 2023 Dec 4
PMID 38049816
Authors
Affiliations
Soon will be listed here.
Abstract

Schistosomiasis is a neglected tropical disease that affects humans and animals in tropical and subtropical regions worldwide. Schistosome eggs are responsible for the pathogenesis and transmission of schistosomiasis, thus reducing egg production is vital for prevention and control of schistosomiasis. However, the mechanisms underlying schistosome reproduction remain unclear. Annexin proteins (ANXs) are involved in the physiological and pathological functions of schistosomes, but the specific regulatory mechanisms and roles of ANX A13 in the development of Schistosoma japonicum and host-parasite interactions remain poorly understood. Therefore, in this study, the expression profiles of SjANX A13 at different life cycle stages of S. japonicum were assessed using quantitative PCR. In addition, the expression profiles of the homolog in S. mansoni were analyzed in reference to public datasets. The results of RNA interference showed that knockdown of SjANX A13 significantly affected the development and egg production of female worms in vivo. The results of an immune protection assay showed that recombinant SjANX A13 increased production of immunoglobulin G-specific antibodies. Finally, co-culture of S. japonicum exosomes with LX-2 cells using a transwell system demonstrated that SjANX A13 is involved in host-parasite interactions via exosomes. Collectively, these results will help to clarify the roles of SjANX A13 in the development of S. japonicum and host-parasite interactions as a potential vaccine candidate.

Citing Articles

A Recent Advance in the Diagnosis, Treatment, and Vaccine Development for Human Schistosomiasis.

Chatterji T, Khanna N, Alghamdi S, Bhagat T, Gupta N, Alkurbi M Trop Med Infect Dis. 2024; 9(10).

PMID: 39453270 PMC: 11511416. DOI: 10.3390/tropicalmed9100243.

References
1.
Mulvenna J, Moertel L, Jones M, Nawaratna S, Lovas E, Gobert G . Exposed proteins of the Schistosoma japonicum tegument. Int J Parasitol. 2009; 40(5):543-54. DOI: 10.1016/j.ijpara.2009.10.002. View

2.
Studer G, Tauriello G, Bienert S, Biasini M, Johner N, Schwede T . ProMod3-A versatile homology modelling toolbox. PLoS Comput Biol. 2021; 17(1):e1008667. PMC: 7872268. DOI: 10.1371/journal.pcbi.1008667. View

3.
Zhou Y, Liang S, Jiang Q . Factors impacting on progress towards elimination of transmission of schistosomiasis japonica in China. Parasit Vectors. 2012; 5:275. PMC: 3519747. DOI: 10.1186/1756-3305-5-275. View

4.
Braschi S, Castro Borges W, Wilson R . Proteomic analysis of the schistosome tegument and its surface membranes. Mem Inst Oswaldo Cruz. 2007; 101 Suppl 1:205-12. DOI: 10.1590/s0074-02762006000900032. View

5.
. Health effects of dietary risks in 195 countries, 1990-2017: a systematic analysis for the Global Burden of Disease Study 2017. Lancet. 2019; 393(10184):1958-1972. PMC: 6899507. DOI: 10.1016/S0140-6736(19)30041-8. View