首页> 美国卫生研究院文献>International Journal of Molecular Medicine >Zfat expression in ZsGreen reporter gene knock-in mice: Implications for a novel function of Zfat in definitive erythropoiesis
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Zfat expression in ZsGreen reporter gene knock-in mice: Implications for a novel function of Zfat in definitive erythropoiesis

机译:ZfGreen报告基因敲入小鼠中的Zfat表达:Zfat在确定性红细胞生成中的新功能的含义。

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摘要

Zinc finger and AT-hook domain containing (Zfat) is a transcriptional regulator harboring an AT-hook domain and 18 repeats of a C2H2 zinc-finger motif, which binds directly to the proximal region of transcription start sites in Zfat-target genes. It was previously reported that deletion of the Zfat gene in mice yields embryonic lethality by embryonic day 8.5 and impairs primitive hematopoiesis in yolk sac blood islands. In addition, Zfat has been reported to be involved in thymic T-cell development and peripheral T-cell homeostasis. In the present study, in order to obtain a precise understanding of the expression and function of Zfat, a knock-in mouse strain (ZfatZsG/+ mice), which expressed ZsGreen in the Zfat locus, was established. ZsGreen signals in tissues and cells of ZfatZsG/+ mice were examined by flow cytometric and histological analyses. Consistent with our previous studies, ZsGreen signals in ZfatZsG/+ mice were detected in the embryo and yolk sac blood islands, as well as in thymocytes, B and T cells. In the ZfatZsG/+ thymus, ZsGreen+ cells were identified not only in T-cell populations but also in thymic epithelial cells, suggesting the role of Zfat in antigen-presenting cells during thymic T-cell development. ZsGreen signals were observed in definitive erythroid progenitor cells in the fetal liver and adult bone marrow of ZfatZsG/+ mice. The proportion of ZsGreen+ cells in these tissues was highest at the early stage of erythroid differentiation, suggesting that Zfat serves particular roles in definitive erythropoiesis. Histological studies demonstrated that ZsGreen signals were detected in the pyramidal cells in the hippocampal CA1 region and the Purkinje cells in the cerebellum, suggesting novel functions of Zfat in nervous tissues. Taken together, these results indicated that the ZfatZsG/+ reporter mouse may be considered a useful tool for elucidating the expression and function of Zfat.
机译:含锌指和AT钩结构域(Zfat)是一个转录调节因子,带有一个AT钩结构域和18个C2H2锌指基序重复序列,直接与Zfat靶基因的转录起始位点的近端区域结合。以前有报道说,在小鼠胚胎第8.5天时,Zfat基因的缺失会产生胚胎致死性,并损害卵黄囊血岛中的原始造血功能。此外,据报道Zfat参与胸腺T细胞发育和外周T细胞稳态。在本研究中,为了准确了解Zfat的表达和功能,我们使用了敲入小鼠品系(Zfat <​​sup> ZsG / + 小鼠),该品系在Zfat基因座中表达ZsGreen。成立。通过流式细胞术和组织学分析检查Zfat <​​sup> ZsG / + 小鼠组织和细胞中的ZsGreen信号。与我们以前的研究一致,在胚胎和卵黄囊血岛以及胸腺细胞,B和T细胞中检测到Zfat <​​sup> ZsG / + 小鼠中的ZsGreen信号。在Zfat <​​sup> ZsG / + 胸腺中,不仅在T细胞群体中而且在胸腺上皮细胞中都鉴定到ZsGreen + 细胞,这表明Zfat在抗原呈递中的作用。胸腺T细胞发育过程中的细胞。在Zfat <​​sup> ZsG / + 小鼠的胎儿肝脏和成年骨髓中,在确定的红系祖细胞中观察到ZsGreen信号。这些组织中ZsGreen + 细胞的比例在红细胞分化的早期阶段最高,这表明Zfat在确定的红细胞生成中起特殊作用。组织学研究表明,在海马CA1区的锥体细胞和小脑的Purkinje细胞中检测到ZsGreen信号,表明Zfat在神经组织中具有新功能。综上所述,这些结果表明Zfat <​​sup> ZsG / + 报告基因小鼠可能被认为是阐明Zfat表达和功能的有用工具。

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