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1.
以酵母分泌型表达载体pPIC9k为基础, 通过一段柔性连接肽Linker构建含有人源化抗HIV-1 gp41单链抗体(ScFv41)和免疫诱导因子葡萄球菌肠毒素A(staphylococcal enterotoxin A, SEA)的融合表达质粒pPIC9k-SL41, 线性化后, 采用电转化法整合入巴斯德菌毕赤酵母GS115中, 经His+MutS表型鉴定、PCR分析以及G418筛选获得高拷贝重组转化子. 摇瓶培养、甲醇诱导表达、SDS-PAGE和Western Blot分析结果表明, 目的蛋白得到良好表达, 表达量最高可达到47.9 mg/L. 目的蛋白经初步纯化后, 用于制备的HIV-1感染靶细胞复制模型进行抗体亲和力测定、细胞结合活性测定和细胞杀伤活性研究, 结果显示, 目的蛋白能够很好地与靶细胞模型中的HIV-1外膜蛋白gp160发生结合反应, 并可介导特异的CTL反应, 对靶细胞具有明显的杀伤活性, 表明获得了具有生物活性的抗HIV-1重组导向制剂.  相似文献   

2.
口蹄疫病毒3ABC基因截短体在毕赤酵母中的表达及鉴定   总被引:1,自引:0,他引:1  
将长为525 bp的口蹄疫病毒3ABC基因截短体克隆到毕赤酵母表达载体pPIC9K中, 构建了重组表达质粒pPIC9K-3ABCt. 用BglⅡ线性化后, 电转化毕赤酵母菌GS115, 经表型筛选, PCR鉴定, 获得阳性重组菌(GS115/pPIC9K-3ABCt). 然后进行诱导表达, 通过SDS-PAGE和Western blot鉴定表达产物. 结果表明, 重组菌株成功分泌表达了分子量为40000, 具有免疫反应活性, 且呈二聚体形式的目的蛋白. 在96 h时表达量达到最高峰, 占分泌总蛋白的18%, 达到23.4 mg/L. 为进一步研制口蹄疫免疫和感染动物鉴别诊断试剂奠定了基础.  相似文献   

3.
两种[Ln(TTA)4].HP (Ln =Yb, Er)配合物被合成并表征。通过紫外可见光谱、荧光光谱、粘度和分子模拟研究了他们与DNA的键合特征。研究结果表明:它们能插入双链的DNA。更重要的是它们的荧光强度能被DNA增强,因此,一种灵敏的荧光检测DNA的方法被发展。两种配合物与质粒DNA的切割反应在凝胶电泳上展开。有意义的是,我们发现在pH=7.2 和 37℃下,两种化合物都能切割超螺旋质粒DNA。另外,我们选择BDNPP作为模型化合物进一步研究了它们对质粒DNA的切割机理,从一级动力学方程,我们间接证明可能是水解切割机理。  相似文献   

4.
Exposure to 4-aminobiphenyl (4-ABP), an environmental and tobacco smoke carcinogen that targets the bladder urothelium, leads to DNA adduct formation and cancer development [1]. Two major analytical challenges in DNA adduct analysis of human samples have been limited sample availability and the need to reach detection limits approaching the part-per-billion threshold. By operating at nano-flow rates and incorporating a capillary analytical column in addition to an online sample enrichment step, we have developed a sensitive and quantitative HPLC–MS/MS method appropriate for the analysis of such samples. This assay for the deoxyguanosine adduct of 4-ABP (dG-C8-4-ABP) gave mass detection limits of 20 amol in 1.25 μg of DNA (5 adducts in 109 nucleosides) with a linear range of 70 amol to 70 fmol. 4-ABP-exposed human bladder cells and rat bladder tissue were analyzed in triplicate, and higher dose concentrations led to increased numbers of detected adducts. It was subsequently established that sample requirements could be further reduced to 1 μg digestions and the equivalent of 250 ng DNA per injection for the detection of low levels of dG-C8-4-ABP in a matrix of exfoliated human urothelial cell DNA. This method is appropriate for the characterization and quantification of DNA adducts in human samples and can lead to a greater understanding of their role in carcinogenesis and also facilitate evaluation of chemopreventive agents.  相似文献   

5.
在纳米金(Au nanoparticles,AuNPs)表面通过组装巯基DNA制得AuNPs-DNA生物探针后,末端脱氧核糖核酸转移酶(Terminal deoxynucleotidyl transferase,TdTase)催化探针DNA的3′-OH端,实现DNA的生长,并得到生长产物长单链DNA(Single-stranded DNA,ssDNA)。通过琼脂糖凝胶电泳和原子力显微镜成像(Atomic force microscope,AFM)对探针及ssDNA进行表征,结果表明TdTase能够实现纳米界面上DNA的高效生长,卷曲状态下链长可达850 nm。进一步将这种DNA的生长策略与适配体(Aptamer)技术相结合。首先在纳米金表面组装适配体片段1,在醛基化的磁珠颗粒表面组装适配体片段2,以此构建针对恩诺沙星的适配体生物传感器(Aptasensor)。该传感器对ENR在10~1.0×10~5 ng/mL具备良好的响应性能,检出限为1.0 ng/mL,能明显区分环丙沙星、氧氟沙星、诺氟沙星等对照组信号。研究表明,基于TdTase的适配体传感器操作便捷,具备良好的靶分子响应性能和特异性,可为食品安全检测等领域提供新的研究思路。  相似文献   

6.
Mosstafa Kazemi 《合成通讯》2020,50(13):1899-1935
Abstract

Catalysis research under magnetically recoverable nanocatalysts is a well-known topic in organic synthesis. In recent times, catalysis research has clearly experienced a renaissance in the area of utility of ferrite nanoparticles based on their ability to recovery and reusability. In this review, the focus is on the fabrication, characterization and of application the MFe2O4 (M=Co, Cu, and Ni) nanocatalysts in synthesis of heterocyclic structural scaffolds.  相似文献   

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