Centre for Discovery Brain Sciences, University of Edinburgh, Edinburgh, EH16 4SB, UK.
Development. 2023 Jun 15;150(12). doi: 10.1242/dev.201323. Epub 2023 Jun 29.
Targeted knock-in of fluorescent reporters enables powerful gene and protein analyses in a physiological context. However, precise integration of long sequences remains challenging in vivo. Here, we demonstrate cloning-free and precise reporter knock-in into zebrafish genes, using PCR-generated templates for homology-directed repair with short homology arms (PCR tagging). Our novel knock-in reporter lines of vesicle-associated membrane protein (vamp) zebrafish homologues reveal subcellular complexity in this protein family. Our approach enables fast and efficient reporter integration in the zebrafish genome (in 10-40% of injected embryos) and rapid generation of stable germline-transmitting lines.
靶向敲入荧光报告基因可在生理环境下实现强大的基因和蛋白质分析。然而,在体内精确整合长序列仍然具有挑战性。在这里,我们通过短同源臂的同源定向修复(PCR 标记)展示了无克隆和精确的报告基因敲入斑马鱼基因。我们新型的囊泡相关膜蛋白(vamp)斑马鱼同源物的敲入报告基因系揭示了该蛋白家族的亚细胞复杂性。我们的方法可快速高效地将报告基因整合到斑马鱼基因组中(在 10-40%的注射胚胎中),并快速生成稳定的种系传递系。