Centre for Organismal Studies, Heidelberg University, Heidelberg, Germany.
Heidelberg Biosciences International Graduate School (HBIGS), Heidelberg, Germany.
Elife. 2022 Apr 4;11:e72124. doi: 10.7554/eLife.72124.
Single nucleotide variants (SNVs) are prevalent genetic factors shaping individual trait profiles and disease susceptibility. The recent development and optimizations of base editors, rubber and pencil genome editing tools now promise to enable direct functional assessment of SNVs in model organisms. However, the lack of bioinformatic tools aiding target prediction limits the application of base editing in vivo. Here, we provide a framework for adenine and cytosine base editing in medaka () and zebrafish (), ideal for scalable validation studies. We developed an online base editing tool ACEofBASEs (a careful evaluation of base-edits), to facilitate decision-making by streamlining sgRNA design and performing off-target evaluation. We used state-of-the-art adenine (ABE) and cytosine base editors (CBE) in medaka and zebrafish to edit eye pigmentation genes and transgenic GFP function with high efficiencies. Base editing in the genes encoding troponin T and the potassium channel ERG faithfully recreated known cardiac phenotypes. Deep-sequencing of alleles revealed the abundance of intended edits in comparison to low levels of insertion or deletion (indel) events for ABE8e and evoBE4max. We finally validated missense mutations in novel candidate genes of congenital heart disease (CHD) , , , and in F0 and F1 for a subset of these target genes with genotype-phenotype correlation. This base editing framework applies to a wide range of SNV-susceptible traits accessible in fish, facilitating straight-forward candidate validation and prioritization for detailed mechanistic downstream studies.
单核苷酸变体 (SNVs) 是普遍存在的遗传因素,它们影响个体特征谱和疾病易感性。碱基编辑器、橡胶和铅笔基因组编辑工具的最新发展和优化,现在有望使我们能够直接在模式生物中对 SNVs 进行功能评估。然而,缺乏有助于靶标预测的生物信息学工具限制了碱基编辑在体内的应用。在这里,我们为斑马鱼(Danio rerio)和青鳉(Oryzias latipes)提供了腺嘌呤和胞嘧啶碱基编辑的框架,非常适合可扩展的验证研究。我们开发了一种在线碱基编辑工具 ACEofBASEs(碱基编辑的仔细评估),通过简化 sgRNA 设计和进行脱靶评估来帮助决策。我们使用最先进的腺嘌呤(ABE)和胞嘧啶碱基编辑器(CBE)在青鳉和斑马鱼中编辑眼睛色素基因和转基因 GFP 的功能,效率很高。在编码肌钙蛋白 T 和钾通道 ERG 的基因中进行碱基编辑,忠实地再现了已知的心脏表型。与 ABE8e 和 evoBE4max 相比,对靶基因进行深度测序揭示了预期编辑的丰度,而插入或缺失(indel)事件的水平较低。我们最后验证了先天性心脏病(CHD)候选基因中的错义突变,在这些靶基因的一部分中,通过基因型-表型相关性,在 F0 和 F1 中进行验证。这个碱基编辑框架适用于鱼类中广泛存在的易受 SNV 影响的特征,为候选基因的直接验证和优先排序提供了便利,以便进行详细的机制下游研究。