Univ. Bordeaux, CNRS, MFP, UMR 5234, Bordeaux, France.
Univ. Bordeaux, CNRS/INSERM, TBMCore/CRISP'edit, UAR 3427/US005, Bordeaux, France.
Mol Microbiol. 2024 Jun;121(6):1079-1094. doi: 10.1111/mmi.15256. Epub 2024 Apr 1.
Kinetoplastids are unicellular eukaryotic flagellated parasites found in a wide range of hosts within the animal and plant kingdoms. They are known to be responsible in humans for African sleeping sickness (Trypanosoma brucei), Chagas disease (Trypanosoma cruzi), and various forms of leishmaniasis (Leishmania spp.), as well as several animal diseases with important economic impact (African trypanosomes, including Trypanosoma congolense). Understanding the biology of these parasites necessarily implies the ability to manipulate their genomes. In this study, we demonstrate that transfection of a ribonucleoprotein complex, composed of recombinant Streptococcus pyogenes Cas9 (SpCas9) and an in vitro-synthesized guide RNA, results in rapid and efficient genetic modifications of trypanosomatids, in marker-free conditions. This approach was successfully developed to inactivate, delete, and mutate candidate genes in various stages of the life cycle of T. brucei and T. congolense, and Leishmania promastigotes. The functionality of SpCas9 in these parasites now provides, to the research community working on these parasites, a rapid and efficient method of genome editing, without requiring plasmid construction and selection by antibiotics but requires only cloning and PCR screening of the clones. Importantly, this approach is adaptable to any wild-type parasite.
动基体目生物是一类广泛存在于动植物界宿主中的单细胞真核鞭毛寄生虫。它们已知会导致人类患上非洲昏睡病(布氏锥虫)、恰加斯病(克氏锥虫)和各种形式的利什曼病(利什曼原虫属),以及几种具有重要经济影响的动物疾病(包括非洲锥虫,如刚果锥虫)。了解这些寄生虫的生物学特性必然需要能够操纵它们的基因组。在这项研究中,我们证明了由重组酿脓链球菌 Cas9(SpCas9)和体外合成的向导 RNA 组成的核糖核蛋白复合物的转染可在无标记条件下快速有效地对锥虫进行遗传修饰。该方法已成功开发用于在布氏锥虫和刚果锥虫以及利什曼原虫前鞭毛体的生命周期的各个阶段中灭活、缺失和突变候选基因。SpCas9 在这些寄生虫中的功能为研究这些寄生虫的研究人员提供了一种快速有效的基因组编辑方法,而不需要质粒构建和抗生素选择,只需要克隆和 PCR 筛选克隆即可。重要的是,这种方法适用于任何野生型寄生虫。