Li Dairong, Zhang Chunyan, Lu Nan, Mu Liuqing, He Yonglin, Xu Lei, Yang Jing, Fan Yu, Kang Yuexi, Yang Chun
Department of Respiratory Disease, The First Affiliated Hospital of Chongqing Medical University Chongqing 400016, China ; Department of Pathology, Chongqing Medical University Chongqing 400016, China.
Department of Pathogenic Organisms, Chongqing Medical University Chongqing 400016, China ; Molecular Medicine and Cancer Research Center, Chongqing Medical University Chongqing 400016, China.
Int J Clin Exp Pathol. 2014 Aug 15;7(9):5674-82. eCollection 2014.
To clone, express, and characterize Mycobacterium tuberculosis (Mtb) ClpP2, and evaluated the potential usage of ClpP2 in clinical diagnosis of tuberculosis.
Mtb ClpP2 was cloned into recombinant plasmid pET32a (+) and transformed into E. coli BL21 (DE3). SDS-PAGE and Western blot analysis were performed to detect the expression of the recombinant protein. The immunogenicity of Mtb ClpP2 was assessed with epitope prediction and antibody titer assay. Quantitative real-time PCR was performed to detect the influence of stress conditions on ClpP2 expression. ClpP2 antigen and antibody in patients with pulmonary diseases were detected by indirect ELISA. ROC curve was constructed to assess the diagnostic accuracy of Mtb ClpP2 for tuberculosis.
We had cloned and expressed recombinant Mtb ClpP2 in E. coli. Our results showed that Mtb ClpP2 had potent immunogenicity, and our own prepared polyclonal antibody could be used in detection and diagnostic tests. Results from Western blot showed that ClpP2 was mainly located in M. bovis BCG cytoplasm, and real-time PCR indicated that stress conditions could enhance the mRNA expression of ClpP2. Indirect ELISA suggested that, in tuberculosis patients, both the levels of ClpP2 antigen and antibody were increased, and the positive rates of ClpP2 were elevated. ROC curve had demonstrated satisfactory sensitivity and specificity of ClpP2-based diagnosis for tuberculosis.
Our results suggest that Mtb ClpP2 antigens would be used as a biomarker in tuberculosis pathogenesis. These findings highlight the feasibility of the application of Mtb ClpP2 in the clinical diagnosis of tuberculosis.
克隆、表达并鉴定结核分枝杆菌(Mtb)ClpP2,并评估ClpP2在结核病临床诊断中的潜在应用价值。
将Mtb ClpP2克隆至重组质粒pET32a(+)中,并转化至大肠杆菌BL21(DE3)。采用SDS-PAGE和Western印迹分析检测重组蛋白的表达。通过表位预测和抗体效价测定评估Mtb ClpP2的免疫原性。进行定量实时PCR检测应激条件对ClpP2表达的影响。采用间接ELISA检测肺部疾病患者体内的ClpP2抗原和抗体。构建ROC曲线评估Mtb ClpP2对结核病的诊断准确性。
我们已在大肠杆菌中克隆并表达了重组Mtb ClpP2。结果表明,Mtb ClpP2具有较强的免疫原性,我们自行制备的多克隆抗体可用于检测和诊断试验。Western印迹结果显示,ClpP2主要位于卡介苗细胞质中,实时PCR表明应激条件可增强ClpP2的mRNA表达。间接ELISA提示,结核病患者体内ClpP2抗原和抗体水平均升高,ClpP2阳性率升高。ROC曲线显示基于ClpP2的结核病诊断具有令人满意的敏感性和特异性。
我们的结果表明,Mtb ClpP2抗原可作为结核病发病机制中的生物标志物。这些发现突出了Mtb ClpP2在结核病临床诊断中应用的可行性。