Probst Simone, Daza Ray A, Bader Natalie, Hummel Jonas F, Weiß Matthias, Tanriver Yakup, Hevner Robert F, Arnold Sebastian J
Institute of Experimental and Clinical Pharmacology and Toxicology, Faculty of Medicine, University of Freiburg, Freiburg, Germany.
Center for Integrative Brain Research, Seattle Children's Research Institute, Seattle, Washington, 98101.
Genesis. 2017 Aug;55(8). doi: 10.1002/dvg.23043. Epub 2017 Jul 14.
The T-box transcription factor Eomes (also known as Tbr2) shows short-lived expression in various localized domains of the embryo, including epiblast cells during gastrulation and intermediate progenitor cells in the cerebral cortex. In these tissues Eomes fulfills crucial roles for lineage specification of progenitors. To directly observe Eomes-dependent cell lineages in the living embryo, we generated a novel dual-fluorescence reporter allele that expresses a membrane-bound tdTomato protein for investigation of cell morphology and a nuclear GFP for cell tracing. This allele recapitulates endogenous EOMES protein expression and is suitable for live imaging. We found that the allele can also be used as a short-to-medium-term lineage tracer, as GFP persists in cells longer than EOMES protein and marks Eomes-dependent lineages with a timeframe of days to weeks depending on the proliferation rate. In summary, we present a novel genetic tool for investigation of Eomes-dependent cell types by live imaging and lineage tracing.
T-box转录因子Eomes(也称为Tbr2)在胚胎的各种局部区域中表现出短暂的表达,包括原肠胚形成期间的上胚层细胞和大脑皮层中的中间祖细胞。在这些组织中,Eomes对祖细胞的谱系特化起着关键作用。为了在活胚胎中直接观察Eomes依赖的细胞谱系,我们构建了一个新型的双荧光报告等位基因,该等位基因表达一种膜结合的tdTomato蛋白用于研究细胞形态,以及一种核GFP用于细胞追踪。该等位基因重现了内源性EOMES蛋白的表达,适用于实时成像。我们发现该等位基因还可以用作短期到中期的谱系示踪剂,因为GFP在细胞中的持续时间比EOMES蛋白长,并根据增殖速率在数天到数周的时间范围内标记Eomes依赖的谱系。总之,我们提出了一种新型的遗传工具,用于通过实时成像和谱系追踪来研究Eomes依赖的细胞类型。