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Characterization Analysis of Schistosoma japonicum Plasma Membrane Repair Relative Gene Myoferlin

Myoferlin is a member of the ferlin family of proteins, which are involved in plasma membrane repair, and has been identified as one of the tegument proteins of Schistosoma japonicum. The tegument proteins are potential candidates for vaccines and new drug targets. In this study, myoferlin of S. jap...

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Autores principales: Xiong, Yanian, Zhang, Ming, Hong, Yang, Wei, Meimei, Ai, Dezhou, Meng, Peipei, Han, Yanhui, Fu, Zhiqiang, Shi, Yaojun, Yang, Jianmei, Lin, Jiaojiao
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2013
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3688920/
https://www.ncbi.nlm.nih.gov/pubmed/23823740
http://dx.doi.org/10.1371/journal.pone.0066396
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author Xiong, Yanian
Zhang, Ming
Hong, Yang
Wei, Meimei
Ai, Dezhou
Meng, Peipei
Han, Yanhui
Fu, Zhiqiang
Shi, Yaojun
Yang, Jianmei
Lin, Jiaojiao
author_facet Xiong, Yanian
Zhang, Ming
Hong, Yang
Wei, Meimei
Ai, Dezhou
Meng, Peipei
Han, Yanhui
Fu, Zhiqiang
Shi, Yaojun
Yang, Jianmei
Lin, Jiaojiao
author_sort Xiong, Yanian
collection PubMed
description Myoferlin is a member of the ferlin family of proteins, which are involved in plasma membrane repair, and has been identified as one of the tegument proteins of Schistosoma japonicum. The tegument proteins are potential candidates for vaccines and new drug targets. In this study, myoferlin of S. japonicum (SjMF) was cloned, expressed and characterized, the potential of SjMF recombinant protein (rSjMF) as a vaccine candidate was evaluated, and the effect of praziquantel on SjMF was detected by Real-time PCR. Immunofluorescence showed that this protein was mainly distributed on the surface of worms at different stages. Sequence analysis revealed that the SjMF open reading frame was conserved at all stages of the S. japonicum life cycle. And SjMF transcription was upregulated in 42-day-old worms, and was significantly higher in female worms. Western blotting revealed that rSjMF showed strong immunogenicity. The cytokine profile and IgG isotype analysis demonstrated that rSjMF plus ISA206 immunization induced a mixed T helper (Th)1/Th2 response. Purified rSjMF emulsified with ISA206 adjuvant significantly reduced worm burden from 21.8% to 23.21% and liver egg number from42.58% to 28.35%. Besides, SjMF transcription was downregulated when worms were exposed to low-dose praziquantel (PZQ) and upregulated when PZQ was degraded, accompanied by recovery of damaged tegument. When worms were exposed to high-dose PZQ, SjMF transcription was downregulated all the time and the damaged tegument did not recover. These findings indicated that SjMF is a potential vaccine against S. japonicum and provides the basis for further investigations into the biological function of SjMF.
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spelling pubmed-36889202013-07-02 Characterization Analysis of Schistosoma japonicum Plasma Membrane Repair Relative Gene Myoferlin Xiong, Yanian Zhang, Ming Hong, Yang Wei, Meimei Ai, Dezhou Meng, Peipei Han, Yanhui Fu, Zhiqiang Shi, Yaojun Yang, Jianmei Lin, Jiaojiao PLoS One Research Article Myoferlin is a member of the ferlin family of proteins, which are involved in plasma membrane repair, and has been identified as one of the tegument proteins of Schistosoma japonicum. The tegument proteins are potential candidates for vaccines and new drug targets. In this study, myoferlin of S. japonicum (SjMF) was cloned, expressed and characterized, the potential of SjMF recombinant protein (rSjMF) as a vaccine candidate was evaluated, and the effect of praziquantel on SjMF was detected by Real-time PCR. Immunofluorescence showed that this protein was mainly distributed on the surface of worms at different stages. Sequence analysis revealed that the SjMF open reading frame was conserved at all stages of the S. japonicum life cycle. And SjMF transcription was upregulated in 42-day-old worms, and was significantly higher in female worms. Western blotting revealed that rSjMF showed strong immunogenicity. The cytokine profile and IgG isotype analysis demonstrated that rSjMF plus ISA206 immunization induced a mixed T helper (Th)1/Th2 response. Purified rSjMF emulsified with ISA206 adjuvant significantly reduced worm burden from 21.8% to 23.21% and liver egg number from42.58% to 28.35%. Besides, SjMF transcription was downregulated when worms were exposed to low-dose praziquantel (PZQ) and upregulated when PZQ was degraded, accompanied by recovery of damaged tegument. When worms were exposed to high-dose PZQ, SjMF transcription was downregulated all the time and the damaged tegument did not recover. These findings indicated that SjMF is a potential vaccine against S. japonicum and provides the basis for further investigations into the biological function of SjMF. Public Library of Science 2013-06-18 /pmc/articles/PMC3688920/ /pubmed/23823740 http://dx.doi.org/10.1371/journal.pone.0066396 Text en © 2013 Xiong et al http://creativecommons.org/licenses/by/4.0/ This is an open-access article distributed under the terms of the Creative Commons Attribution License, which permits unrestricted use, distribution, and reproduction in any medium, provided the original author and source are properly credited.
spellingShingle Research Article
Xiong, Yanian
Zhang, Ming
Hong, Yang
Wei, Meimei
Ai, Dezhou
Meng, Peipei
Han, Yanhui
Fu, Zhiqiang
Shi, Yaojun
Yang, Jianmei
Lin, Jiaojiao
Characterization Analysis of Schistosoma japonicum Plasma Membrane Repair Relative Gene Myoferlin
title Characterization Analysis of Schistosoma japonicum Plasma Membrane Repair Relative Gene Myoferlin
title_full Characterization Analysis of Schistosoma japonicum Plasma Membrane Repair Relative Gene Myoferlin
title_fullStr Characterization Analysis of Schistosoma japonicum Plasma Membrane Repair Relative Gene Myoferlin
title_full_unstemmed Characterization Analysis of Schistosoma japonicum Plasma Membrane Repair Relative Gene Myoferlin
title_short Characterization Analysis of Schistosoma japonicum Plasma Membrane Repair Relative Gene Myoferlin
title_sort characterization analysis of schistosoma japonicum plasma membrane repair relative gene myoferlin
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3688920/
https://www.ncbi.nlm.nih.gov/pubmed/23823740
http://dx.doi.org/10.1371/journal.pone.0066396
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