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在人类疟原虫恶性疟原虫中,稳健的诱导型 Cre 重组酶活性可在单个无性红细胞生长周期内实现高效基因缺失。

Robust inducible Cre recombinase activity in the human malaria parasite Plasmodium falciparum enables efficient gene deletion within a single asexual erythrocytic growth cycle.

机构信息

Division of Parasitology, MRC National Institute for Medical Research, Mill Hill, London, NW7 1AA, UK.

出版信息

Mol Microbiol. 2013 May;88(4):687-701. doi: 10.1111/mmi.12206. Epub 2013 Mar 26.

Abstract

Asexual blood stages of the malaria parasite, which cause all the pathology associated with malaria, can readily be genetically modified by homologous recombination, enabling the functional study of parasite genes that are not essential in this part of the life cycle. However, no widely applicable method for conditional mutagenesis of essential asexual blood-stage malarial genes is available, hindering their functional analysis. We report the application of the DiCre conditional recombinase system to Plasmodium falciparum, the causative agent of the most dangerous form of malaria. We show that DiCre can be used to obtain rapid, highly regulated site-specific recombination in P. falciparum, capable of excising loxP-flanked sequences from a genomic locus with close to 100% efficiency within the time-span of a single erythrocytic growth cycle. DiCre-mediated deletion of the SERA5 3' UTR failed to reduce expression of the gene due to the existence of alternative cryptic polyadenylation sites within the modified locus. However, we successfully used the system to recycle the most widely used drug resistance marker for P. falciparum, human dihydrofolate reductase, in the process producing constitutively DiCre-expressing P. falciparum clones that have broad utility for the functional analysis of essential asexual blood-stage parasite genes.

摘要

疟原虫的无性血阶段会引起所有与疟疾相关的病理变化,很容易通过同源重组进行基因修饰,从而能够对寄生虫基因进行功能研究,而这些基因在生命周期的这一部分并不重要。然而,目前还没有广泛适用于必需的无性血阶段疟原虫基因条件突变的方法,这阻碍了对这些基因的功能分析。我们报告了 DiCre 条件重组酶系统在引起最危险形式疟疾的疟原虫 Plasmodium falciparum 中的应用。我们表明,DiCre 可用于在 P. falciparum 中获得快速、高度调控的特异性重组,能够在单个红细胞生长周期内以接近 100%的效率从基因组基因座中切除loxP 侧翼序列。由于在修饰基因座内存在替代的隐蔽 poly(A) 加尾位点,DiCre 介导的 SERA5 3'UTR 缺失未能降低基因的表达。然而,我们成功地使用该系统在 P. falciparum 中回收了最广泛使用的抗药性标记物——人二氢叶酸还原酶,从而产生了持续表达 DiCre 的 P. falciparum 克隆,这对于必需的无性血阶段寄生虫基因的功能分析具有广泛的应用价值。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/7bbc/3708112/25f76ff25712/mmi0088-0687-f1.jpg

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