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果蝇E-钙黏蛋白细胞外区域的近端一半对于许多依赖钙黏蛋白的事件来说并非必需,但对于腹沟形成却是必需的。

The proximal half of the Drosophila E-cadherin extracellular region is dispensable for many cadherin-dependent events but required for ventral furrow formation.

作者信息

Haruta Tomohiro, Warrior Rahul, Yonemura Shigenobu, Oda Hiroki

机构信息

JT Biohistory Research Hall, 1-1 Murasaki-cho, Takatsuki, Osaka 569-1125 JapanGraduate School of Science, Department of Biology, Osaka University, Osaka, JapanDepartment of Developmental and Cell Biology and the Developmental Biology Center, University of California Irvine, Irvine, CA 92612, USAElectron Microscope Laboratory, RIKEN, Center for Developmental Biology, Kobe 650-0047, Japan.

出版信息

Genes Cells. 2010 Mar;15(3):193-208. doi: 10.1111/j.1365-2443.2010.01389.x. Epub 2010 Feb 24.

Abstract

The formation of the ventral furrow during Drosophila gastrulation is driven by coordinated apical constriction. Cell-cell adhesion is thought to regulate apical constriction, but the mechanisms are poorly understood. DE-cadherin, an epithelial classic cadherin, has in its membrane-proximal extracellular region a suite of domains absent from vertebrate/urochordate classic cadherins. We constructed DEΔP, a DE-cadherin derivative that lacks the membrane-proximal half of the extracellular region but retains the entire cytoplasmic domain and still exhibits strong cell-cell binding ability. The extracellular region of DEΔP consists of only cadherin repeats, mimicking vertebrate/urochordate classic cadherins. In animals lacking DE-cadherin, DEΔP organized adherens junction assembly and functioned fully in many cadherin-dependent processes, including oogenesis. Embryos in which DE-cadherin was entirely replaced by DEΔP established the blastoderm epithelium but failed to form a ventral furrow. Apical constrictions were initiated relatively normally but subsequently decelerated. These were then followed by catastrophic disruption of the junctional network. Our results suggest that although the membrane-proximal half of the DE-cadherin extracellular region is dispensable for many developmental events, it is essential for efficient and robust apical constriction during ventral furrow formation.

摘要

果蝇原肠胚形成过程中腹沟的形成是由协调的顶端收缩驱动的。细胞间黏附被认为可调节顶端收缩,但其机制尚不清楚。DE-钙黏蛋白是一种上皮经典钙黏蛋白,在其膜近端细胞外区域有一组脊椎动物/尾索动物经典钙黏蛋白所没有的结构域。我们构建了DEΔP,这是一种DE-钙黏蛋白衍生物,它缺少细胞外区域的膜近端一半,但保留了整个细胞质结构域,并且仍然表现出很强的细胞间结合能力。DEΔP的细胞外区域仅由钙黏蛋白重复序列组成,类似于脊椎动物/尾索动物经典钙黏蛋白。在缺乏DE-钙黏蛋白的动物中,DEΔP组织黏着连接组装,并在许多依赖钙黏蛋白的过程中,包括卵子发生中,发挥完全的功能。DE-钙黏蛋白完全被DEΔP取代的胚胎建立了胚盘上皮,但未能形成腹沟。顶端收缩开始时相对正常,但随后减速。接着是连接网络的灾难性破坏。我们的结果表明,尽管DE-钙黏蛋白细胞外区域的膜近端一半对于许多发育事件是可有可无的,但它对于腹沟形成过程中高效且稳健的顶端收缩至关重要。

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