Department of Physiology, Keio University School of Medicine, Shinjuku, Tokyo 160-8582, Japan
Research Institute for Microbial Diseases, Osaka University, Suita, Osaka 565-0871, Japan.
Development. 2019 Nov 4;146(21):dev174938. doi: 10.1242/dev.174938.
Genetic lineage-tracing techniques are powerful tools for studying specific cell populations in development and pathogenesis. Previous techniques have mainly involved systems for tracing a single gene, which are limited in their ability to facilitate direct comparisons of the contributions of different cell lineages. We have developed a new combinatorial system for tracing all three germ layers using self-cleaving 2A peptides and multiple site-specific recombinases (SSRs). In the resulting TRiCK (TRiple Coloured germ layer Knock-in) mice, the three germ layers are conditionally and simultaneously labelled with distinct fluorescent proteins via embryogenesis. We show that previously reported ectopic expressions of lineage markers are the outcome of secondary gene expression. The results presented here also indicate that the commitment of caudal axial stem cells to neural or mesodermal fate proceeds without lineage fluctuations, contrary to the notion of their bi-potency. Moreover, we developed IMES, an optimized tissue clearing method that is highly compatible with a variety of fluorescent proteins and immunostaining, and the combined use of TRiCK mice and IMES can facilitate comprehensive analyses of dynamic contributions of all three germ layers.
遗传谱系追踪技术是研究发育和发病机制中特定细胞群体的有力工具。以前的技术主要涉及追踪单个基因的系统,其能力有限,难以直接比较不同细胞谱系的贡献。我们开发了一种使用自切割 2A 肽和多个位点特异性重组酶 (SSR) 追踪所有三个胚层的新组合系统。在产生的 TRiCK(三重彩色胚层基因敲入)小鼠中,通过胚胎发生,三个胚层通过不同的荧光蛋白进行条件性和同时标记。我们表明,以前报道的谱系标记的异位表达是次级基因表达的结果。这里呈现的结果还表明,尾部轴向干细胞向神经或中胚层命运的分化没有谱系波动,这与它们的双潜能概念相反。此外,我们开发了 IMES,这是一种高度兼容多种荧光蛋白和免疫染色的优化组织透明化方法,TRiCK 小鼠和 IMES 的联合使用可以促进对所有三个胚层的动态贡献进行全面分析。