首页> 美国卫生研究院文献>Journal of Anatomy and Physiology >Enforced expression of the transcription factor HOXD3 under the control of the Wnt1 regulatory element modulates cell adhesion properties in the developing mouse neural tube
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Enforced expression of the transcription factor HOXD3 under the control of the Wnt1 regulatory element modulates cell adhesion properties in the developing mouse neural tube

机译:在Wnt1调控元件控制下转录因子HOXD3的强制表达调节发育中的小鼠神经管中的细胞粘附特性

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摘要

HOX genes expressed in a specific spatial and temporal manner play a crucial role in determining the body plan during the early development of vertebrates. In adult tissues, many HOX genes participate in normal hematopoiesis and carcinogenesis. We previously found that overexpression of the homeobox gene HOXD3 alters expression levels of cell adhesion molecules in human cancer cell lines. Here, we have investigated whether HOXD3 expression is related to the cell adhesion processes during mouse development focusing on dorsal midline cells or roof-plate cells of the neural tube and neural crest cells. We created transgenic mouse embryos, in which HOXD3 is expressed in the dorsal midline under the control of the Wnt1 regulatory element, and analyzed these embryos at embryonic day 10.5–13.5. In HOXD3-expressing transgenic embryos, although neural crest-derived structures in the trunk region appeared to be normal, striking abnormalities were found in the neural tube. In transgenic embryos expressing the lacZ gene under the control of the Wnt1 regulatory element, expression of lacZ was restricted to roof-plate cells within the neural tube. By contrast, in HOXD3-expressing transgenic embryos, expression of HOXD3 was not only located in the dorsal neural tube, but also had spread inside the ventricular zone in more ventral regions of the neural tube. These findings show that the HOXD3 transgene is expressed more broadly than the Wnt1 gene is normally expressed. Expression of both Wnt1 and Msx1, marker genes in the roof plate, was further extended ventrally in HOXD3-expressing embryos than in normal embryos, suggesting that expression of the HOXD3 transgene expands the roof plate ventrally within the neural tube. In the ventricular zone of HOXD3-expressing embryos at embryonic day 10.5, we observed an increase in the number of mitotic cells and failure of interkinetic nuclear migration of progenitor cells. Furthermore, in HOXD3-expressing embryos at embryonic day 12.5, the ventricular zone, in which progenitor cells became more loosely connected to each other, was composed of a large number of cells that did not express N-cadherin. Our results indicate that expression of HOXD3 is closely associated with modulation of cell-adhesive properties during embryonic development.
机译:在脊椎动物的早期发育过程中,以特定的时空方式表达的HOX基因在确定人体计划中起着至关重要的作用。在成人组织中,许多HOX基因参与正常的造血和癌变。我们先前发现同源盒基因HOXD3的过表达改变了人类癌细胞系中细胞粘附分子的表达水平。在这里,我们已经研究了HOXD3的表达是否与小鼠发育过程中的细胞粘附过程有关,该过程主要集中在神经管和神经c细胞的背中线细胞或顶板细胞上。我们创建了转基因小鼠胚胎,其中HOXD3在Wnt1调控元件的控制下在背中线表达,并在胚胎第10.5-13.5天分析了这些胚胎。在表达HOXD3的转基因胚胎中,尽管躯干区的神经c衍生结构似乎正常,但在神经管中发现了惊人的异常。在Wnt1调控元件的控制下表达lacZ基因的转基因胚胎中,lacZ的表达仅限于神经管内的顶板细胞。相比之下,在表达HOXD3的转基因胚胎中,HOXD3的表达不仅位于背神经管中,而且还分布在神经管腹侧区域的脑室内。这些发现表明HOXD3转基因的表达比正常表达的Wnt1基因更广泛。在表达 HOXD3 的胚胎中,屋顶板上标记基因Wnt1和Msx1的表达都比正常胚胎在腹侧进一步扩展,这表明 HOXD3 转基因的表达扩展顶板在神经管内的腹侧。在胚胎第10.5天表达 HOXD3 的胚胎的心室区域,我们观察到有丝分裂细胞数量的增加和祖细胞运动核迁移的失败。此外,在第12.5天的表达 HOXD3 的胚胎中,其祖细胞彼此之间的连接更加松散的心室区由大量不表达N-钙粘着蛋白的细胞组成。我们的结果表明, HOXD3 的表达与胚胎发育过程中细胞粘附特性的调节密切相关。

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