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High-Throughput Generation of P. falciparum Functional Molecules by Recombinational Cloning

机译:通过重组克隆高通量产生恶性疟原虫功能分子

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摘要

Large-scale functional genomics studies for malaria vaccine and drug development will depend on the generation of molecular tools to study protein expression. We examined the feasibility of a high-throughput cloning approach using the Gateway system to create a large set of expression clones encoding Plasmodium falciparum single-exon genes. Master clones and their ORFs were transferred en masse to multiple expression vectors. Target genes (n = 303) were selected using specific sets of criteria, including stage expression and secondary structure. Upon screening four colonies per capture reaction, we achieved 84% cloning efficiency. The genes were subcloned in parallel into three expression vectors: a DNA vaccine vector and two protein expression vectors. These transfers yielded a 100% success rate without any observed recombination based on single colony screening. The functional expression of 95 genes was evaluated in mice with DNA vaccine constructs to generate antibody against various stages of the parasite. From these, 19 induced antibody titers against the erythrocytic stages and three against sporozoite stages. We have overcome the potential limitation of producing large P. falciparum clone sets in multiple expression vectors. This approach represents a powerful technique for the production of molecular reagents for genome-wide functional analysis of the P. falciparum genome and will provide for a resource for the malaria resource community distributed through public repositories.
机译:疟疾疫苗和药物开发的大规模功能基因组学研究将取决于研究蛋白质表达的分子工具的产生。我们研究了使用Gateway系统创建大量编码克隆恶性疟原虫单外显子基因的表达克隆的高通量克隆方法的可行性。将主克隆及其ORF整体转移至多种表达载体。使用特定的标准集(包括阶段表达和二级结构)选择目标基因(n = 303)。在每个捕获反应中筛选出四个菌落后,我们实现了84%的克隆效率。将基因并行亚克隆到三个表达载体中:DNA疫苗载体和两个蛋白质表达载体。这些转移产生了100%的成功率,而没有基于单菌落筛选的任何观察到的重组。在具有DNA疫苗构建体的小鼠中评估了95个基因的功能表达,以产生针对寄生虫各个阶段的抗体。从这些中,针对红细胞阶段的19个诱导的抗体滴度和针对子孢子阶段的3个诱导的抗体滴度。我们已经克服了在多种表达载体中产生大型恶性疟原虫克隆集的潜在限制。这种方法代表了一种强大的技术,可用于生产分子试剂,用于恶性疟原虫基因组的全基因组功能分析,并将为通过公共资源库分发的疟疾资源社区提供一种资源。

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