Kohara Keigo, Inoue Akitoshi, Nakano Yousuke, Hirai Hirokazu, Kobayashi Takuya, Maruyama Masato, Baba Ryosuke, Kawashima Chiho
Department of Cellular and Functional Biology, Institute of Biomedical Science, Kansai Medical University, Hirakata, Osaka 573-1010, Japan.
Department of Medical Chemistry, Kansai Medical University, Graduate School of Medicine, Hirakata, Osaka 573-1010, Japan.
iScience. 2020 Jun 26;23(6):101248. doi: 10.1016/j.isci.2020.101248. Epub 2020 Jun 7.
Elucidating fine architectures and functions of cellular and synaptic connections requires development of new flexible methods. Here, we created a concept called the "battle of transgenes," based on which we generated strategies using genetically engineered battles of multiple recombinases. The strategies enabled split-tunable allocation of multiple transgenes. We demonstrated the versatility of these strategies and technologies in inducing strong and multi-sparse allocations of multiple transgenes. Furthermore, the combination of our transgenic strategy and expansion microscopy enabled three-dimensional high-resolution imaging of whole synaptic structures in the hippocampus with simultaneous visualizations of endogenous synaptic proteins. These strategies and technologies based on the battle of genes may accelerate the analysis of whole synaptic and cellular connections in diverse life science fields.
阐明细胞和突触连接的精细结构与功能需要开发新的灵活方法。在此,我们创建了一个名为“转基因之战”的概念,并基于此利用多种重组酶的基因工程之战生成策略。这些策略实现了多个转基因的可拆分可调分配。我们展示了这些策略和技术在诱导多个转基因的强且多稀疏分配方面的多功能性。此外,我们的转基因策略与扩展显微镜技术相结合,能够对海马体中的整个突触结构进行三维高分辨率成像,同时可视化内源性突触蛋白。这些基于基因之战的策略和技术可能会加速不同生命科学领域中整个突触和细胞连接的分析。