Institut Pasteur, Unité de Biologie et Génétique du Paludisme, Paris, France.
Nat Protoc. 2011 Aug 25;6(9):1412-28. doi: 10.1038/nprot.2011.363.
We describe here a highly efficient procedure for conditional mutagenesis in Plasmodium. The procedure uses the site-specific recombination FLP-FRT system of yeast and targets the pre-erythrocytic stages of the rodent Plasmodium parasite P. berghei, including the sporozoite stage and the subsequent liver stage. The technique consists of replacing the gene under study by an FRTed copy (i.e., flanked by FRT sites) in the erythrocytic stages of a parasite clone that expresses the flip (FLP) recombinase stage-specifically--called the 'deleter' clone. We present the available deleter clones, which express FLP at different times of the parasite life cycle, as well as the schemes and tools for constructing new deleter parasites. We also outline and discuss the various strategies for exchanging a wild-type gene with an FRTed copy and for generating conditional gene knockout or knockdown parasite clones. Finally, we detail the protocol for obtaining sporozoites that lack a protein of interest and for monitoring sporozoite-specific DNA excision and depletion of the target protein. The protocol should allow the functional analysis of any essential protein in the sporozoite, liver stage or hepatic merozoite stages of rodent Plasmodium parasites.
我们在这里描述了一种在疟原虫中进行条件性突变的高效方法。该方法利用了酵母的位点特异性重组 FLP-FRT 系统,并针对啮齿动物疟原虫 P. berghei 的前血期阶段,包括孢子体阶段和随后的肝期阶段。该技术包括在表达翻转酶(FLP)重组酶的寄生虫克隆的红细胞阶段中用 FRTed 拷贝(即,被 FRT 位点侧翼)替换研究基因 - 称为“删除”克隆。我们提供了现有的删除克隆,这些克隆在寄生虫生命周期的不同时间表达 FLP,以及构建新的删除寄生虫的方案和工具。我们还概述并讨论了用 FRTed 拷贝交换野生型基因以及生成条件性基因敲除或敲低寄生虫克隆的各种策略。最后,我们详细介绍了获得缺乏感兴趣蛋白质的孢子体的方案,以及监测孢子体特异性 DNA 切除和靶蛋白耗竭的方案。该方案应该允许对啮齿动物疟原虫的孢子体、肝期或肝内裂殖体阶段的任何必需蛋白质进行功能分析。