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黏附分子海胆类蛋白的差异表达驱动果蝇上皮形态发生。

Differential expression of the adhesion molecule Echinoid drives epithelial morphogenesis in Drosophila.

作者信息

Laplante Caroline, Nilson Laura A

机构信息

Department of Biology, McGill University, 1205 Doctor Penfield Avenue, Montréal, QC H3A 1B1, Canada.

出版信息

Development. 2006 Aug;133(16):3255-64. doi: 10.1242/dev.02492. Epub 2006 Jul 19.

Abstract

Epithelial morphogenesis requires cell movements and cell shape changes coordinated by modulation of the actin cytoskeleton. We identify a role for Echinoid (Ed), an immunoglobulin domain-containing cell-adhesion molecule, in the generation of a contractile actomyosin cable required for epithelial morphogenesis in both the Drosophila ovarian follicular epithelium and embryo. Analysis of ed mutant follicle cell clones indicates that the juxtaposition of wild-type and ed mutant cells is sufficient to trigger actomyosin cable formation. Moreover, in wild-type ovaries and embryos, specific epithelial domains lack detectable Ed, thus creating endogenous interfaces between cells with and without Ed; these interfaces display the same contractile characteristics as the ectopic Ed expression borders generated by ed mutant clones. In the ovary, such an interface lies between the two cell types of the dorsal appendage primordia. In the embryo, Ed is absent from the amnioserosa during dorsal closure, generating an Ed expression border with the lateral epidermis that coincides with the actomyosin cable present at this interface. In both cases, ed mutant epithelia exhibit loss of this contractile structure and subsequent defects in morphogenesis. We propose that local modulation of the cytoskeleton at Ed expression borders may represent a general mechanism for promoting epithelial morphogenesis.

摘要

上皮形态发生需要通过肌动蛋白细胞骨架的调节来协调细胞运动和细胞形状变化。我们发现,含有免疫球蛋白结构域的细胞粘附分子海胆蛋白(Ed)在果蝇卵巢滤泡上皮和胚胎的上皮形态发生所需的收缩性肌动球蛋白索的生成中发挥作用。对ed突变滤泡细胞克隆的分析表明,野生型细胞和ed突变细胞的并列足以触发肌动球蛋白索的形成。此外,在野生型卵巢和胚胎中,特定的上皮区域缺乏可检测到的Ed,从而在有和没有Ed的细胞之间形成内源性界面;这些界面显示出与ed突变克隆产生的异位Ed表达边界相同的收缩特性。在卵巢中,这样一个界面位于背侧附属物原基的两种细胞类型之间。在胚胎中,背侧闭合期间羊膜浆膜中不存在Ed,与外侧表皮形成一个Ed表达边界,该边界与该界面处存在的肌动球蛋白索重合。在这两种情况下,ed突变上皮都表现出这种收缩结构的丧失以及随后的形态发生缺陷。我们提出,在Ed表达边界处对细胞骨架的局部调节可能是促进上皮形态发生的一种普遍机制。

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