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首页> 外文期刊>Clinical and vaccine immunology: CVI >A conformational change of C fragment of tetanus neurotoxin reduces its ganglioside-binding activity but does not destroy its immunogenicity
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A conformational change of C fragment of tetanus neurotoxin reduces its ganglioside-binding activity but does not destroy its immunogenicity

机译:破伤风的构象改变C片段神经毒素降低其ganglioside-binding活动而不破坏其免疫原性

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The C fragment of tetanus neurotoxin (TeNT-Hc) with different conformations was observed due to the four cysteine residues within it which could form different intramolecular disulfide bonds. In this study, we prepared and compared three types of monomeric TeNT-Hc with different conformational components: free sulfhydryls (50 kDa), bound sulfhydryls (44 kDa), and a mixture of the two conformational proteins (half 50 kDa and half 44 kDa). TeNT-Hc with bound sulfhydryls reduced its binding activity to ganglioside G T1b and neuronal PC-12 cells compared to what was seen for TeNT-Hc with free sulfhydryls. However, there was no significant difference among their immunogenicities in mice, including induction of antitetanus toxoid IgG titers, antibody types, and protective capacities against tetanus neurotoxin challenge. Our results showed that the conformational changes of TeNT-Hc resulting from disulfide bond formation reduced its ganglioside-binding activity but did not destroy its immunogenicity, and the protein still retained continuous B cell and T cell epitopes; that is, the presence of the ganglioside-binding site within TeNT-Hc may be not essential for the induction of a fully protective antitetanus response. TeNT-Hc with bound sulfhydryls may be developed into an ideal human vaccine with a lower potential for side effects.
机译:破伤风毒素C片段(TeNT-Hc)与不同的构象是由于观察到四个半胱氨酸残基会形成不同的分子内二硫键。这项研究中,我们准备和比较三种类型与不同的单体的TeNT-Hc构象组件:自由巯基(50kDa),结合巯基(44 kDa),和一个混合物两个构象的蛋白质(50 kDa的一半半44 kDa)。减少了神经节苷脂G T1b绑定活动和神经PC-12细胞相比看到的TeNT-Hc自由巯基。他们之间没有显著差异小鼠的免疫原性,包括诱导antitetanus类毒素免疫球蛋白浓度、抗体类型对破伤风和防护能力神经毒素的挑战。TeNT-Hc构象变化所导致的二硫键的形成降低了ganglioside-binding活动但不灭绝其免疫原性,蛋白质保留连续B细胞和T细胞抗原表位;也就是说,ganglioside-binding的存在网站内TeNT-Hc可能不是必不可少的充分保护antitetanus的感应响应。发展成为一个理想的人类疫苗降低潜在的副作用。

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