Carver E A, Jiang R, Lan Y, Oram K F, Gridley T
The Jackson Laboratory, Bar Harbor, Maine 04609, USA.
Mol Cell Biol. 2001 Dec;21(23):8184-8. doi: 10.1128/MCB.21.23.8184-8188.2001.
Snail family genes encode DNA binding zinc finger proteins that act as transcriptional repressors. Mouse embryos deficient for the Snail (Sna) gene exhibit defects in the formation of the mesoderm germ layer. In Sna(-/-) mutant embryos, a mesoderm layer forms and mesodermal marker genes are induced but the mutant mesoderm is morphologically abnormal. Lacunae form within the mesoderm layer of the mutant embryos, and cells lining these lacunae retain epithelial characteristics. These cells resemble a columnar epithelium and have apical-basal polarity, with microvilli along the apical surface and intercellular electron-dense adhesive junctions that resemble adherens junctions. E-cadherin expression is retained in the mesoderm of the Sna(-/-) embryos. These defects are strikingly similar to the gastrulation defects observed in snail-deficient Drosophila embryos, suggesting that the mechanism of repression of E-cadherin transcription by Snail family proteins may have been present in the metazoan ancestor of the arthropod and mammalian lineages.
蜗牛家族基因编码作为转录抑制因子的DNA结合锌指蛋白。缺乏蜗牛(Sna)基因的小鼠胚胎在中胚层胚层形成过程中表现出缺陷。在Sna(-/-)突变胚胎中,中胚层层形成且中胚层标记基因被诱导,但突变的中胚层在形态上是异常的。在突变胚胎的中胚层层内形成腔隙,衬于这些腔隙的细胞保留上皮特征。这些细胞类似于柱状上皮,具有顶-基极性,沿顶表面有微绒毛以及类似于黏着连接的细胞间电子致密黏附连接。E-钙黏蛋白表达保留在Sna(-/-)胚胎的中胚层中。这些缺陷与在缺乏蜗牛的果蝇胚胎中观察到的原肠胚形成缺陷惊人地相似,表明蜗牛家族蛋白抑制E-钙黏蛋白转录的机制可能存在于节肢动物和哺乳动物谱系的后生动物祖先中。