Wellcome Sanger Institute, Wellcome Genome Campus, Cambridge, United Kingdom.
Front Cell Infect Microbiol. 2022 Sep 16;12:981432. doi: 10.3389/fcimb.2022.981432. eCollection 2022.
CRISPR editing has enabled the rapid creation of fluorescent transgenic lines, facilitating a deeper understanding of parasite biology. The impact of genetic perturbations such as gene disruption or the introduction of drug resistance alleles on parasite fitness is typically quantified in competitive growth assays between the query line and a wild type reference. Although fluorescent reporter lines offer a facile and frequently used method to measure relative growth, this approach is limited by the strain background of the existing reporter, which may not match the growth characteristics of the query strains, particularly if these are slower-growing field isolates. Here, we demonstrate an efficient CRISPR-based approach to generate fluorescently labelled parasite lines using mNeonGreen derived from the LanYFP protein in , which is one of the brightest monomeric green fluorescent proteins identified. Using a positive-selection approach by insertion of an in-frame blasticidin S deaminase marker, we generated a Dd2 reporter line expressing mNeonGreen under the control of the ( Prodrug Activation and Resistance Esterase) locus. We selected the locus as an integration site because it is highly conserved across strains, expressed throughout the intraerythrocytic cycle, not essential, and offers the potential for negative selection to further enrich for integrants. The mNeonGreen@ line demonstrates strong fluorescence with a negligible fitness defect. In addition, the construct developed can serve as a tool to fluorescently tag other strains for experimentation.
CRISPR 编辑技术使快速创建荧光转基因系成为可能,这有助于更深入地了解寄生虫生物学。通过基因敲除或引入耐药等位基因等遗传干扰对寄生虫适应性的影响,通常是在查询系与野生型参考系之间的竞争生长测定中进行量化的。虽然荧光报告系提供了一种简便且常用的方法来测量相对生长,但这种方法受到现有报告系的菌株背景的限制,因为该背景可能与查询系的生长特征不匹配,特别是如果这些系是生长较慢的野外分离株。在这里,我们展示了一种基于 CRISPR 的有效方法,该方法使用来自 LanYFP 蛋白的 mNeonGreen 标记寄生虫系,LanYFP 是已鉴定的最亮的单体绿色荧光蛋白之一。我们通过插入框内博来霉素抗性基因(blasticidin S deaminase)标记物,采用正选择方法,在 (前药激活和耐药酯酶)基因座的控制下生成表达 mNeonGreen 的 Dd2 报告系。我们选择 基因座作为整合位点,因为它在 菌株中高度保守,在整个红内期循环中表达,不是必需的,并且可以进行负选择以进一步富集整合子。mNeonGreen@系表现出强荧光,几乎没有适应性缺陷。此外,所开发的构建体可作为荧光标记其他 菌株进行实验的工具。