Zhou Jian, Lu Gang, Wang Lin, Zhou Aihua H, Han Yali L, Guo Jingjing J, Song Pengxia X, Zhou Huaiyu Y, Cong Hua, Hou Ming, He Shenyi Y
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Acta Parasitol. 2017 Sep 26;62(3):513-519. doi: 10.1515/ap-2017-0061.
Toxoplasma gondii is defined as an obligate intracellular apicomplexan parasite and influences approximatelyone-third of the human all over the world. ROP54 protein is expressed in the rhoptry of Toxoplasma gondii. In the present study, we used SMART software to analyzethe secondary structure of ROP54. The 3D model of ROP54 protein was constructed and analyzed using SWISS-MODEL server and VMD software. The structure results fully showed that ROP54 proteinis an importantmember from the ROP family. Moreover, DNAMAN software and Epitope Database online service were used to analyze liner-B cell epitopes and Th-cell epitopes of the protein. The bioinformatics prediction of ROP54 protein could provide positive information on treatment and vaccine for toxoplasmosis. Furthermore, ROP54 gene was obtained from PCR, and a recombinant eukaryotic expression vector (pEGFP-ROP54) was constructed in the following study. After identification of enzyme digestion, the constructed plasmid was transfected into HEK 293-T cells. The RT-PCR result suggested that the recombinant plasmid could transcribe successfully in HEK 293-T cell.
刚地弓形虫被定义为一种专性细胞内顶复门寄生虫,影响着全球约三分之一的人口。ROP54蛋白在刚地弓形虫的棒状体中表达。在本研究中,我们使用SMART软件分析ROP54的二级结构。使用SWISS-MODEL服务器和VMD软件构建并分析了ROP54蛋白的三维模型。结构结果充分表明,ROP54蛋白是ROP家族的重要成员。此外,使用DNAMAN软件和在线表位数据库服务分析了该蛋白的线性B细胞表位和Th细胞表位。ROP54蛋白的生物信息学预测可为弓形虫病的治疗和疫苗提供积极信息。此外,通过PCR获得了ROP54基因,并在后续研究中构建了重组真核表达载体(pEGFP-ROP54)。经酶切鉴定后,将构建的质粒转染到HEK 293-T细胞中。RT-PCR结果表明,重组质粒能够在HEK 293-T细胞中成功转录。