Volume 37, Issue 11 pp. 751-758

Identification of Immunodominant Th1-type T cell Epitopes from Schistosoma japonicum 28 kDa Glutathione-S-transferase, a Vaccine Candidate

Guang-Fu LI

Guang-Fu LI

Department of Pathogenic Biology, Nanjing Medical University, Nanjing 210029, China

Search for more papers by this author
Yong WANG

Corresponding Author

Yong WANG

Department of Pathogenic Biology, Nanjing Medical University, Nanjing 210029, China

*Yong WANG: Tel, 86-25-86862774; Fax, 86-25-86863187; Email, [email protected]

*Zhao-Song ZHANG: Tel, 86-25-86862774; Fax, 86-25-86863187; E-mail, [email protected]

Search for more papers by this author
Zhao-Song ZHANG

Corresponding Author

Zhao-Song ZHANG

Department of Pathogenic Biology, Nanjing Medical University, Nanjing 210029, China

*Yong WANG: Tel, 86-25-86862774; Fax, 86-25-86863187; Email, [email protected]

*Zhao-Song ZHANG: Tel, 86-25-86862774; Fax, 86-25-86863187; E-mail, [email protected]

Search for more papers by this author
Xin-Jun WANG

Xin-Jun WANG

Department of Pathogenic Biology, Nanjing Medical University, Nanjing 210029, China

Search for more papers by this author
Min-Jun JI

Min-Jun JI

Department of Pathogenic Biology, Nanjing Medical University, Nanjing 210029, China

Search for more papers by this author
Xiang ZHU

Xiang ZHU

Department of Pathogenic Biology, Nanjing Medical University, Nanjing 210029, China

Search for more papers by this author
Feng LIU

Feng LIU

Department of Pathogenic Biology, Nanjing Medical University, Nanjing 210029, China

Search for more papers by this author
Xiao-Ping CAI

Xiao-Ping CAI

Department of Pathogenic Biology, Nanjing Medical University, Nanjing 210029, China

Search for more papers by this author
Hai-Wei WU

Hai-Wei WU

Department of Pathogenic Biology, Nanjing Medical University, Nanjing 210029, China

Search for more papers by this author
Guan-Ling WU

Guan-Ling WU

Department of Pathogenic Biology, Nanjing Medical University, Nanjing 210029, China

Search for more papers by this author
First published: 15 November 2005
Citations: 5

This work was supported by a grant from the National Natural Science Foundation of China (No. 30271166)

Abstract

Abstract The-type cytokines produced by the stimulation of Th1-type epitopes derived from defined schistosome-associated antigens are correlated with the development of resistance to the parasite infection. Schistosoma mansoni 28 kDa glutathione-S-transferase (Sm28GST), a major detoxification enzyme, has been recognized as a vaccine candidate and a phase II clinical trial has been carried out. Sheep immunized with recombinant Schistosoma japonicum 28GST (Sj28GST) have shown immune protection against the parasite infection. In the present study, six candidate peptides (P1, P2, P3, P4, P7 and P8) from Sj28GST were predicted, using software, to be T cell epitopes, and peptides P5 and P6 were designed by extending five amino acids at the N-terminal and C-terminal of P1, respectively. The peptide 190–211 aa in Sj28GST corresponding to the Th1-type epitope (190–211 aa) identified from Sm28GST was selected and named P9. The nine candidate peptides were synthesized or produced as the fusion protein with thioredoxin in the pET32c(+)/BL21(DE3) system. Their capacity to induce a Th1-type response in vitro was measured using lymphocyte proliferation, cytokine detection experiments and flow cytometry. The results showed that P6 (73–86 aa) generated the strongest stimulation effect on T cells among the nine candidate peptides, and drove the highest level of IFN-γ and IL-2. Therefore, P6 is a functional Th1-type T cell epitope that is different from that in Sm28GST, and will be useful for the development of effective vaccines which can trigger acquired immunity against S. japonicum. Moreover, our strategy of identifying the Th1-type epitope by a combination of software prediction and experimental confirmation provides a convenient and cost-saving alternative approach to previous methods.

Edited by Zu-Chuan ZHANG

The full text of this article hosted at iucr.org is unavailable due to technical difficulties.