| Literature DB >> 32867818 |
Minh-Anh Dang-Trinh1,2,3, Jose Ma M Angeles4, Kharleezelle J Moendeg5, Adrian Miki C Macalanda6, Thu-Thuy Nguyen1, Luna Higuchi1, Shotaro Nakagun7, Masashi Kirinoki8, Yuichi Chigusa8, Yasuyuki Goto9, Shin-Ichiro Kawazu10,11.
Abstract
BACKGROUND: Schistosoma japonicum, which inhabits the mesenteric vein of the mammalian hosts for about 20 to 30 years, is subjected to the oxidative stresses from the host defense mechanism during their intra-mammalian stages. To counteract this host immune attack, the parasite utilizes their antioxidant system for survival inside the host. Peroxiredoxins (Prxs), thiol-specific antioxidant proteins, play an essential role for protecting the parasite against oxidative stress by reducing hydrogen peroxide to water. Only three types of 2-Cys Prxs have been previously characterized in S. japonicum whereas a fourth Prx has been identified for Schistosoma mansoni as Prx-4. A sequence coding homologous to this gene in the S. japonicum database was identified, characterized and expressed as recombinant SjPrx-4 protein (rSjPrx-4). Furthermore, rSjPrx-4 was evaluated in this study for its diagnostic potentials in detecting S. japonicum infection in humans.Entities:
Keywords: Biomarker; Diagnosis; ELISA; Peroxiredoxin-4; Schistosoma japonicum
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Year: 2020 PMID: 32867818 PMCID: PMC7460784 DOI: 10.1186/s13071-020-04313-w
Source DB: PubMed Journal: Parasit Vectors ISSN: 1756-3305 Impact factor: 3.876
Fig. 1Gel electrophoresis and SDS-PAGE of SjPrx-4. a Agarose gel electrophoresis image of the PCR-amplified SjPrx-4 gene from the cDNA library of eggs and adult worms. Lane M: marker; Lane 1: eggs; Lane 2: adult worms. b SDS-PAGE of recombinant SjPrx-4. rSjPrx-4 was expressed in E. coli. Lane M: marker; Lane 1: E. coli lysate before adding IPTG; Lane 2: E. coli lysate at 25 h after adding IPTG shows expression of the recombinant protein with GST-tag (SjPrx-4-GST); Lane 3: purified rSjPrx-4 without the GST-tag (SjPrx-4)
Fig. 2Different expression profiles of the SjPrx-4 gene at various developmental stages of S. japonicum. a Transcription of the SjPrx-4 gene was detected by RT-PCR in the different developmental stages. Lane 1: male; Lane 2: female; Lane 3: eggs; Lane 4: sporocysts. Upper panel: transcription of SjPrx-4 gene; Lower panel: transcription of SjTPI gene as internal control. b Expression levels of the SjPrx-4 gene were determined by qRT-PCR. Data were analyzed according to 2−ΔΔCq method using the TPI gene as the internal control for each sample. The fold changes of transcription levels in eggs and male and female worms were calculated relative to that of the sporocysts. Data are represented as the mean ± SE of three independent assays. *P < 0.05
Fig. 3Antioxidant activity of SjPrx-4. Lane 1: pBluescript plasmid DNA; Lane 2: pBluescript plasmid DNA+ FeCl3; Lane 3: pBluescript plasmid DNA+DTT; Lane 4: pBluescript plasmid DNA + FeCl3 + DTT; Lanes 5–8: pBluescript plasmid DNA + FeCl3 + DTT and 10 ng, 100 ng, 1 µg, and 5 µg/ml of rSjPrx-4, respectively; Lanes 9, 10: pBluescript plasmid DNA + FeCl3 + DTT and 1 µg, and 5 µg/ml of denatured rSjPrx-4, respectively. The nicked form (NF) and supercoiled form (SF) are indicated on the right
Fig. 4Western blot analysis of S. japonicum egg and adult worm lysates with anti-SjPrx-4 mouse sera. Lane 1: protein marker; Lane 2: S. japonicum egg lysate incubated with normal mouse sera; Lane 3: S. japonicum egg lysate incubated with anti-SjPrx-4 mouse sera; Lane 4: adult worm lysate incubated with normal mouse sera; Lane 5: adult worm lysate incubated with anti-SjPrx-4 mouse sera
Fig. 5Immunolocalization of SjPrx-4 in eggs and adult worms of S. japonicum. The red arrows indicate the existence of SjPrx-4 expression. a The liver section from S. japonicum-infected mice reacted with anti-SjPrx-4 mouse serum shows immunopositivity in the space between the miracidium and the egg-shell. b There is no reaction in the liver section from S. japonicum-infected mice reacted with normal mouse serum. c Immunopositive reactions of SjPrx-4 were observed in the tegument (te) and in the parenchyma (p) of S. japonicum adult worms (♀: female and ♂: male). d The section from S. japonicum adult worms reacted with normal mouse serum did not reveal any immunopositive reactions. Scale-bars: 50 µm
Fig. 6ELISA results with SjPrx-4, SjTPx-1 recombinant antigens and a combination of rSjPrx-4/rSjTPx-1. Cut-off values are represented as the mean + 3SD values of 45 non-endemic controls by the red dotted lines. The number of samples having OD values higher than the cut-off values are shown