Jonsdottir Thorey K, Paoletta Martina S, Ishizaki Takahiro, Hernandez Sophia, Ivanova Maria, Herrera Curbelo Alicia, Saiki Paulina A, Selinger Martin, Das Debojyoti, Henriksson Johan, Bushell Ellen S C
The Laboratory for Molecular Infection Medicine Sweden, Umeå University, Försörjningsvägen 2A, 901 87 Umeå, Sweden.
Department of Molecular Biology, Umeå University, Försörjningsvägen 2A, 901 87 Umeå, Sweden.
Nucleic Acids Res. 2025 Jan 11;53(2). doi: 10.1093/nar/gkaf005.
Many Plasmodium genes remain uncharacterized due to low genetic tractability. Previous large-scale knockout screens have only been able to target about half of the genome in the more genetically tractable rodent malaria parasite Plasmodium berghei. To overcome this limitation, we have developed a scalable CRISPR system called P. berghei high-throughput (PbHiT), which uses a single cloning step to generate targeting vectors with 100-bp homology arms physically linked to a guide RNA (gRNA) that effectively integrate into the target locus. We show that PbHiT coupled with gRNA sequencing robustly recapitulates known knockout mutant phenotypes in pooled transfections. Furthermore, we provide an online resource of knockout and tagging designs to target the entire P. berghei genome and scale-up vector production using a pooled ligation approach. This work presents for the first time a tool for high-throughput CRISPR screens in Plasmodium for studying the parasite's biology at scale.
由于疟原虫的遗传操作难度大,许多疟原虫基因仍未得到充分研究。以往的大规模基因敲除筛选仅能针对遗传操作相对容易的啮齿类疟原虫伯氏疟原虫约一半的基因组。为克服这一限制,我们开发了一种名为伯氏疟原虫高通量(PbHiT)的可扩展CRISPR系统,该系统通过单一克隆步骤生成靶向载体,其100个碱基对的同源臂与有效整合到目标位点的引导RNA(gRNA)物理连接。我们表明,PbHiT与gRNA测序相结合,在混合转染中能可靠地重现已知的基因敲除突变体表型。此外,我们提供了一个在线资源,用于针对整个伯氏疟原虫基因组的基因敲除和标记设计,并使用混合连接方法扩大载体生产规模。这项工作首次展示了一种用于疟原虫高通量CRISPR筛选的工具,可用于大规模研究疟原虫生物学。