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Expression of an antiviral protein from Lonomia obliqua hemolymph in baculovirus/insect cell system

机译:Lonomia obliqua血淋巴中抗病毒蛋白在杆状病毒/昆虫细胞系统中的表达

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The control of viral infections, mainly those caused by influenza viruses, is of great interest in Public Health. Several studies have shown the presence of active properties in the hemolymph of arthropods, some of which are of interest for the development of new pharmacological drugs. Recently, we have demonstrated the existence of a potent antiviral property in the hemolymph of . Lonomia obliqua caterpillars. The aim of this study was to produce an antiviral protein in a baculovirus/Sf9 cell system. The resulting bacmid contains the sequence coding for the antiviral protein previously described by our group. Total RNA from . L. obliqua caterpillars was extracted with Trizol and used in the reverse transcription assay with oligo(d)T primer followed by polymerase chain reactions (RT-PCR) with specific primers for the cDNA coding for the antiviral protein, based on the sequence deposited in the GenBank database. Restriction sites were inserted in the cDNA for ligation in the donor plasmid pFastBac1?. The recombinant plasmid was selected in . Escherichia coli DH5α and subsequently used in the transformation of . E. coli DH10Bac for the construction of the recombinant bacmid. This bacmid was used for the expression of the antiviral protein in the baculovirus/Sf9 cell system. After identifying the protein by western blot, activity tests were performed, showing that the purified recombinant protein was able to significantly reduce viral replication (about 4 logs). Studies on the optimization of the expression system for the production of this antiviral protein in insect cells are in progress.
机译:在公共卫生领域,控制主要由流感病毒引起的病毒感染非常重要。几项研究表明节肢动物的血淋巴中存在活性,其中一些对开发新的药理药物很感兴趣。最近,我们已经证明在的血淋巴中存在有效的抗病毒特性。 Lonomia obliqua毛毛虫。这项研究的目的是在杆状病毒/ Sf9细胞系统中产生一种抗病毒蛋白。所得杆状病毒含有我们小组先前描述的编码抗病毒蛋白的序列。来自的总RNA。用Trizol提取斜毛毛虫,用于寡聚腺苷酸(d)T引物的逆转录测定,然后根据沉积在大肠杆菌中的序列,用特异性引物针对编码抗病毒蛋白的cDNA进行聚合酶链反应(RT-PCR)。 GenBank数据库。将限制性位点插入cDNA中以便与供体质粒pFastBac1α连接。在中选择了重组质粒。大肠杆菌DH5α及其后用于大肠杆菌的转化。大肠杆菌DH10Bac,用于构建重组杆粒。该杆粒用于在杆状病毒/ Sf9细胞系统中表达抗病毒蛋白。通过蛋白质印迹鉴定蛋白质后,进行活性测试,结果表明纯化的重组蛋白质能够显着减少病毒复制(约4个对数)。关于在昆虫细胞中产生这种抗病毒蛋白的表达系统的优化研究正在进行中。

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