Max Planck Institute for Biology, RG Colour Pattern Evolution, Tuebingen, Max-Planck-Ring 5, 72076 Tuebingen, Germany.
Biol Open. 2024 Apr 15;13(4). doi: 10.1242/bio.060401. Epub 2024 Mar 28.
The zebrafish (Danio rerio) is an important model organism for basic as well as applied bio-medical research. One main advantage is its genetic tractability, which was greatly enhanced by the introduction of the CRISPR/Cas method a decade ago. The generation of loss-of-function alleles via the production of small insertions or deletions in the coding sequences of genes with CRISPR/Cas systems is now routinely achieved with high efficiency. The method is based on the error prone repair of precisely targeted DNA double strand breaks by non-homologous end joining (NHEJ) in the cell nucleus. However, editing the genome with base pair precision, by homology-directed repair (HDR), is by far less efficient and therefore often requires large-scale screening of potential carriers by labour intensive genotyping. Here we confirm that the Cas9 protein variant SpRY, with relaxed PAM requirement, can be used to target some sites in the zebrafish genome. In addition, we demonstrate that the incorporation of an artificial nuclear localisation signal (aNLS) into the Cas9 protein variants not only enhances the efficiency of gene knockout but also the frequency of HDR, thereby facilitating the efficient modification of single base pairs in the genome. Our protocols provide a guide for a cost-effective generation of versatile and potent Cas9 protein variants and efficient gene editing in zebrafish.
斑马鱼(Danio rerio)是基础和应用生物医学研究的重要模式生物。其主要优势之一是遗传可操作性,这在十年前 CRISPR/Cas 方法引入后得到了极大的增强。通过在编码序列中产生小的插入或缺失来生成功能丧失等位基因,现在可以通过 CRISPR/Cas 系统以高效率实现。该方法基于在细胞核中通过非同源末端连接(NHEJ)对精确靶向的 DNA 双链断裂进行易错修复。然而,通过同源定向修复(HDR)实现碱基对精度的基因组编辑效率要低得多,因此通常需要通过劳动密集型的基因分型对潜在载体进行大规模筛选。在这里,我们证实了具有宽松 PAM 要求的 SpRY Cas9 蛋白变体可用于靶向斑马鱼基因组中的一些位点。此外,我们证明将人工核定位信号(aNLS)掺入 Cas9 蛋白变体不仅可以提高基因敲除的效率,还可以提高 HDR 的频率,从而促进基因组中单碱基对的高效修饰。我们的方案为经济高效地生成多功能和强效 Cas9 蛋白变体以及在斑马鱼中进行有效的基因编辑提供了指南。