Article ID Journal Published Year Pages File Type
1225290 Journal of Proteomics 2016 10 Pages PDF
Abstract

•iTRAQ-coupled LC–MS/MS was used to investigate proteome of ESPs obtained from schistosomula and adult worms of S. japonicum.•Bioinformatics analysis showed that differential ESPs were mainly related to stress responses and immunoregulation.•Recombinant S. japonicum HSP70 and TPx could regulate host immune response through altering macrophage activity.

Schistosomiasis remains a serious public health problem with 200 million people infected and 779 million people at risk worldwide. The schistosomulum and adult worm are two stages of the complex lifecycle of Schistosoma japonicum and excretory/secretory proteins (ESPs) play a major role in host–parasite interactions. In this study, iTRAQ-coupled LC–MS/MS was used to investigate the proteome of ESPs obtained from schistosomula and adult worms of S. japonicum, and 298 differential ESPs were identified. Bioinformatics analysis of differential ESPs in the two developmental stages showed that 161 ESPs upregulated in schistosomula were associated with stress responses, carbohydrate metabolism and protein degradation, whereas ESPs upregulated in adult worms were mainly related to immunoregulation and purine metabolism. Recombinant heat shock protein 70 (HSP70) and thioredoxin peroxidase (TPx), two differential proteins identified in this study, were expressed. Further studies showed that rSjHSP70 and rSjTPx stimulated macrophages expressing high levels of the anti-inflammatory factors TGF-β, IL-10 and Arg-1, and suppressed the expression of the pro-inflammatory cytokines TNF-α, IL-1β, IL-6 and iNOS in LPS-induced macrophages. This study provides new insights into the survival and development of schistosomes in the final host and helps identify vaccine candidates or new diagnostic reagents for schistosomiasis.

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Related Topics
Physical Sciences and Engineering Chemistry Analytical Chemistry
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