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首页> 外文期刊>Genesis: the journal of genetics and development >Foxa2-venus fusion reporter mouse line allows live-cell analysis of endoderm-derived organ formation
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Foxa2-venus fusion reporter mouse line allows live-cell analysis of endoderm-derived organ formation

机译:Foxa2金星融合报告基因小鼠品系可对内胚层衍生器官形成进行活细胞分析

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摘要

The Foxa2-winged helix/forkhead box transcription factor (TF) is absolutely required for endoderm formation and organogenesis. Foxa2 plays essential roles during lung, liver, pancreas, and gastrointestinal tract development and regulates cell-type specific programs in the adult organism. To specifically address Foxa2 function during organ development and homeostasis, we generated a Foxa2-Venus fusion (FVF) reporter protein by gene targeting in embryonic stem (ES) cells. The FVF knock-in reporter is expressed under endogenous Foxa2 control and the fluorescent protein fusion does not interfere with TF function, as homozygous mice are viable and fertile. Moreover, the FVF protein localizes to the nucleus, associates with chromatin during mitosis, and reflects the endogenous Foxa2 protein distribution pattern in several tissues in heterozygous animals. Importantly, live-cell imaging on single-cell level of the FVF and Sox17-Cherry fusion double knock-in reporter ES cell line reveals the dynamics of endoderm TF accumulation during ES cell differentiation. The FVF reporter also allowed us to identify the endoderm progenitors during gastrulation and to visualize the different branching morphogenesis modes of the lung and pancreas epithelium in ex vivo embryo and organ cultures. In summary, the generation of the FVF reporter line adds an important new tool to visualize and analyse endoderm-derived organ development and homeostasis on the cellular and molecular level. genesis 51:596-604
机译:内胚层形成和器官发生绝对需要具有Foxa2翼的螺旋/叉头盒转录因子(TF)。 Foxa2在肺,肝,胰腺和胃肠道的发育中起着至关重要的作用,并调节成体生物体中特定于细胞类型的程序。为了专门解决Foxa2在器官发育和体内平衡过程中的功能,我们通过靶向胚胎干(ES)细胞的基因产生了Foxa2-Venus融合(FVF)报告蛋白。 FVF敲入报告基因在内源性Foxa2对照下表达,并且荧光蛋白融合体不干扰TF功能,因为纯合小鼠是有活力且可育的。此外,FVF蛋白位于核中,在有丝分裂过程中与染色质结合,并反映了杂合动物几种组织中的内源性Foxa2蛋白分布模式。重要的是,在FVF和Sox17-Cherry融合双敲入报告基因ES细胞系的单细胞水平上进行活细胞成像揭示了ES细胞分化过程中内胚层TF积累的动力学。 FVF记者还使我们能够确定胃胚形成过程中的内胚层祖细胞,并观察离体胚胎和器官培养物中肺和胰腺上皮的不同分支形态发生模式。总之,FVF报告基因系的产生增加了重要的新工具,可在细胞和分子水平上可视化和分析内胚层衍生的器官发育和体内稳态。创世纪51:596-604

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