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小鼠Tenm4是中胚层诱导所必需的。

Mouse Tenm4 is required for mesoderm induction.

作者信息

Nakamura Hisashi, Cook Rita N, Justice Monica J

机构信息

Department of Molecular and Human Genetics, Baylor College of Medicine, Houston, TX 77030, USA.

出版信息

BMC Dev Biol. 2013 Mar 25;13:9. doi: 10.1186/1471-213X-13-9.

Abstract

BACKGROUND

Tenm4 is a mouse homolog of the Drosophila gene Tenascin-m (Ten-m (Odd oz)), which functions in motor neuron routing. Recently, a genome-wide association analysis for bipolar disorder identified a new susceptibility locus at TENM4 increasing the importance of understanding Tenm4. A series of Tenm4 mouse alleles showing a broad range of phenotypes were isolated after ENU mutagenesis. Here, we examine the timing and features of gastrulation failure in a loss of function allele.

RESULTS

Embryonic mesoderm did not form in loss of function Tenm4m1/m1 mutant embryos. Genes normally expressed in embryonic mesoderm were not expressed in the mutant, the primitive streak did not form, and markers of the anteroposterior axis were not expressed or were mislocalized. The lack of embryonic mesoderm could not be attributed to poor proliferation of the epiblast, as normal numbers of dividing cells were observed. Epiblast cells maintained expression of Pou5f1 suggesting that they remain pluripotent, but they did not have the capacity to form any germ layer derivatives in teratomas, showing that the inability to induce mesoderm is cell autonomous. Misexpression of E-cadherin and N-cadherin suggest that the embryos did not undergo an epithelial-to-mesenchymal transition. In addition, Wnt signaling did not occur in the mutants, as assessed by the TOPGAL reporter assay, while a GSK3β inhibitor partially rescued the mutant embryos, and rescued TOPGAL reporter expression.

CONCLUSIONS

These data demonstrate that Tenm4 mutants fail to form a primitive streak and to induce embryonic mesoderm. Markers of anterior posterior patterning fail to be expressed or are mislocalized. Further, Tenm4 mutants lack the ability to differentiate in a cell autonomous manner. Together, our data suggest that embryos become impaired prior to E6.5 and as a result, Wnt signaling fails to occur; however, the involvement of other signaling pathways remains to be examined.

摘要

背景

Tenm4是果蝇基因腱生蛋白-m(Ten-m(Odd oz))的小鼠同源物,其在运动神经元路径形成中发挥作用。最近,一项针对双相情感障碍的全基因组关联分析在TENM4基因座发现了一个新的易感位点,这增加了了解Tenm4的重要性。在ENU诱变后分离出了一系列表现出广泛表型的Tenm4小鼠等位基因。在此,我们研究功能缺失等位基因中原肠胚形成失败的时间和特征。

结果

在功能缺失的Tenm4m1/m1突变胚胎中未形成胚胎中胚层。通常在胚胎中胚层表达的基因在突变体中未表达,原条未形成,前后轴标记物未表达或定位错误。胚胎中胚层的缺失不能归因于上胚层增殖不良,因为观察到正常数量的分裂细胞。上胚层细胞维持Pou5f1的表达,表明它们保持多能性,但它们没有能力在畸胎瘤中形成任何胚层衍生物,这表明无法诱导中胚层是细胞自主性的。E-钙黏蛋白和N-钙黏蛋白的错误表达表明胚胎未经历上皮-间充质转化。此外,通过TOPGAL报告基因检测评估,突变体中未发生Wnt信号传导,而GSK3β抑制剂部分挽救了突变胚胎,并挽救了TOPGAL报告基因表达。

结论

这些数据表明,Tenm4突变体无法形成原条并诱导胚胎中胚层。前后模式形成的标记物未能表达或定位错误。此外,Tenm4突变体缺乏以细胞自主方式分化的能力。总之,我们的数据表明胚胎在E6.5之前就受到损害,因此Wnt信号传导无法发生;然而,其他信号通路的参与情况仍有待研究。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/6438/3614540/256017be8c7c/1471-213X-13-9-1.jpg

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