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首页> 外文期刊>PLoS Genetics >Notch-dependent epithelial fold determines boundary formation between developmental fields in the Drosophila antenna
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Notch-dependent epithelial fold determines boundary formation between developmental fields in the Drosophila antenna

机译:依赖缺口的上皮褶皱决定果蝇触角发育场之间的边界形成

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Compartment boundary formation plays an important role in development by separating adjacent developmental fields. Drosophila imaginal discs have proven valuable for studying the mechanisms of boundary formation. We studied the boundary separating the proximal A1 segment and the distal segments, defined respectively by Lim1 and Dll expression in the eye-antenna disc. Sharp segregation of the Lim1 and Dll expression domains precedes activation of Notch at the Dll/Lim1 interface. By repressing bantam miRNA and elevating the actin regulator Enable, Notch signaling then induces actomyosin-dependent apical constriction and epithelial fold. Disruption of Notch signaling or the actomyosin network reduces apical constriction and epithelial fold, so that Dll and Lim1 cells become intermingled. Our results demonstrate a new mechanism of boundary formation by actomyosin-dependent tissue folding, which provides a physical barrier to prevent mixing of cells from adjacent developmental fields.
机译:隔室边界的形成通过分离相邻的发育场在发育中起重要作用。果蝇假想盘已被证明对研究边界形成的机理很有价值。我们研究了分隔近端A1段和远端段的边界,分别由眼天线盘中的Lim1和Dll表达定义。 Lim1和Dll表达域的急剧分离在Dll / Lim1接口的Notch激活之前。通过抑制矮脚鸡miRNA并升高肌动蛋白调节剂Enable,Notch信号转导诱导肌动球蛋白依赖性的根尖收缩和上皮折叠。 Notch信号或放线菌素网络的破坏减少了根尖收缩和上皮折叠,从而使Dll和Lim1细胞混合在一起。我们的结果证明了由肌动球蛋白依赖性组织折叠形成边界的新机制,该机制提供了物理屏障,以防止来自相邻发育场的细胞混合。

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