首页> 外文期刊>Acta Biochimica et Biophysica Sinica >Identification of Immunodominant Th1-type T cell Epitopes from Schistosoma japonicum 28 kDa Glutathione-S-transferase, a Vaccine Candidate
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Identification of Immunodominant Th1-type T cell Epitopes from Schistosoma japonicum 28 kDa Glutathione-S-transferase, a Vaccine Candidate

机译:从日本血吸虫28 kDa谷胱甘肽-S-转移酶(一种疫苗候选者)中鉴定免疫性Th1型T细胞表位

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摘要

Th1-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.
机译:通过刺激源自限定的血吸虫相关抗原的Th1型表位产生的Th1型细胞因子与对寄生虫感染的抗性发展相关。曼氏血吸虫28 kDa谷胱甘肽S-转移酶(Sm28GST)是一种主要的解毒酶,已被视为候选疫苗,并已进行了Ⅱ期临床试验。用重组日本血吸虫28GST(Sj28GST)免疫的绵羊显示出针对寄生虫感染的免疫保护。在本研究中,使用软件将来自Sj28GST的六个候选肽(P1,P2,P3,P4,P7和P8)预测为T细胞表位,并通过在N端扩展五个氨基酸来设计肽P5和P6。 P1的C末端和C末端。选择对应于从Sm28GST鉴定的Th1型表位(190-211aa)的Sj28GST中的肽190-211aa,并将其命名为P9。在pET32c(+)/ BL21(DE3)系统中合成了9种候选肽或将其与硫氧还蛋白融合为融合蛋白。使用淋巴细胞增殖,细胞因子检测实验和流式细胞仪测量了它们在体外诱导Th1型应答的能力。结果表明,P9(73-86 aa)在9种候选肽中对T细胞产生最强的刺激作用,并驱动最高水平的IFN-γ和IL-2。因此,P6是功能性Th1型T细胞表位,与Sm28GST中的抗原决定簇不同,对于开发可以触发针对日本血吸虫的获得性免疫力的有效疫苗很有用。此外,我们通过软件预测和实验确认相结合来识别Th1型表位的策略为以前的方法提供了一种方便且节省成本的替代方法。

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