首页> 外文期刊>International Journal of Clinical and Experimental Pathology >Prokaryotic expression and identification of B- and T-cell combined epitopes of Em95 antigen of Echinococcus multilocularis
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Prokaryotic expression and identification of B- and T-cell combined epitopes of Em95 antigen of Echinococcus multilocularis

机译:多房棘球E球菌Em95抗原的B细胞和T细胞组合表位的原核表达及鉴定

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Objective: This study is to clone and identify B- and T-cell combined epitopes from Em95 antigen. Methods: The B- and T-cell combined epitopes were predicted using bioinformatic software. Two DNA sequences of Em95-1 (which contained the coding region of one B- and T-cell combined epitope) and Em95-2 (which contained the coding regions of two B- and T-cell combined epitopes) were amplified by PCR. Em95-1 and Em95-2 were cloned into pET32a vector for protein expression. Rabbit was immunized with the expressed proteins of rEm95-1 and rEm95-2 to produce polyclonal antibodies. The immunogenicity and antigenicity of rEm95-1 and rEm95-2 were examined by Western blot analysis. Results: The three B- and T-cell combined epitopes were successfully cloned and expressed in PET32a vector. The recombinant antigens of rEm95-1 and rEm95-2 could specifically bind the human serum from patients with alveolar echinococcosis and specifically bind the prepared polyclonal antibodies. Conclusion: Three B- and T-cell combined epitopes were successfully cloned with good immunogenicity and antigenicity. Our data suggest that B- and T-cell combined epitopes predicted from the Em95 antigen may be used for the construction of high-valence vaccines and as targets for prevention of echinococcosis.
机译:目的:本研究旨在从Em95抗原中克隆和鉴定B细胞和T细胞组合表位。方法:使用生物信息学软件预测B细胞和T细胞结合的表位。通过PCR扩增了Em95-1(包含一个B和T细胞结合的抗原决定簇的编码区)和Em95-2(包含两个B和T细胞结合的抗原决定簇的编码区)的两个DNA序列。将Em95-1和Em95-2克隆到pET32a载体中进行蛋白表达。用表达的rEm95-1和rEm95-2的蛋白免疫兔以产生多克隆抗体。通过蛋白质印迹分析检查了rEm95-1和rEm95-2的免疫原性和抗原性。结果:成功克隆了三个B细胞和T细胞结合的表位,并在PET32a载体中表达。 rEm95-1和rEm95-2的重组抗原可以特异性结合肺泡棘球菌病患者的人血清,并特异性结合制备的多克隆抗体。结论:成功克隆了3个B细胞和T细胞结合的表位,具有良好的免疫原性和抗原性。我们的数据表明,由Em95抗原预测的B细胞和T细胞结合表位可以用于构建高价疫苗,并可以作为预防棘球菌病的靶标。

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