首页> 美国卫生研究院文献>The Journal of Biophysical and Biochemical Cytology >armadillo bazooka and stardust are critical for early stages in formation of the zonula adherens and maintenance of the polarized blastoderm epithelium in Drosophila
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armadillo bazooka and stardust are critical for early stages in formation of the zonula adherens and maintenance of the polarized blastoderm epithelium in Drosophila

机译:犰狳火箭筒和星尘对于果蝇小带粘连形成的早期阶段和果蝇极化胚盘上皮的维持至关重要

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摘要

Cellularization of the Drosophila embryo results in the formation of a cell monolayer with many characteristics of a polarized epithelium. We have used antibodies specific to cellular junctions and nascent plasma membranes to study the formation of the zonula adherens (ZA) in relation to the establishment of basolateral membrane polarity. The same approach was then used as a test system to identify X-linked zygotically active genes required for ZA formation. We show that ZA formation begins during cellularization and that the basolateral membrane domain is established at mid-gastrulation. By creating deficiencies for defined regions of the X chromosome, we have identified genes that are required for the formation of the ZA and the generation of basolateral membrane polarity. We show that embryos mutant for both stardust (sdt) and bazooka (baz) fail to form a ZA. In addition to the failure to establish the ZA, the formation of the monolayered epithelium is disrupted after cellularization, resulting in formation of a multilayered cell sheet by mid-gastrulation. SEM analysis of mutant embryos revealed a conversion of cells exhibiting epithelial characteristics into cells exhibiting mesenchymal characteristics. To investigate how mutations that affect an integral component of the ZA itself influence ZA formation, we examined embryos with reduced maternal and zygotic supply of wild-type Arm protein. These embryos, like embryos mutant for both sdt and baz, exhibit an early disruption of ZA formation. These results suggest that early stages in the assembly of the ZA are critical for the stability of the polarized blastoderm epithelium.
机译:果蝇胚胎的细胞化导致形成具有极化上皮许多特征的细胞单层。我们已经使用了特异于细胞连接和新生质膜的抗体来研究与基底外侧膜极性的建立相关的小带粘连(ZA)的形成。然后将相同的方法用作测试系统,以鉴定ZA形成所需的X连锁的酶活性基因。我们显示ZA形成在细胞化过程中开始,并且基底外侧膜结构域在胎中期建立。通过创建X染色体的定义区域的缺陷,我们已经确定了ZA的形成和基底外侧膜极性的产生所需的基因。我们表明,为星尘(sdt)和火箭筒(bazook)突变的胚胎无法形成ZA。除了不能建立ZA之外,在细胞化之后,单层上皮的形成也被破坏,导致通过中间成膜形成多层细胞片。突变胚胎的SEM分析显示,具有上皮特征的细胞已转变为具有间充质特征的细胞。为了研究影响ZA自身组成部分的突变如何影响ZA的形成,我们研究了野生型Arm蛋白的母体和合子供应减少的胚胎。这些胚胎像sdt和baz突变的胚胎一样,表现出ZA形成的早期破坏。这些结果表明,ZA组装的早期阶段对极化胚盘上皮的稳定性至关重要。

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