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黏附蛋白 capricious 和 tartan 对果蝇视网膜上皮完整性的调节

Modulation of Drosophila retinal epithelial integrity by the adhesion proteins capricious and tartan.

作者信息

Mao Yanlan, Kerr Martin, Freeman Matthew

机构信息

MRC Laboratory of Molecular Biology, Cambridge, United Kingdom.

出版信息

PLoS One. 2008 Mar 19;3(3):e1827. doi: 10.1371/journal.pone.0001827.

Abstract

BACKGROUND

The development of the Drosophila eye imaginal disc requires complex epithelial rearrangements. Cells of the morphogenetic furrow are apically constricted and this leads to a physical indentation in the epithelium. Posterior to the furrow, cells start to rearrange into distinct clusters and eventually form a precisely patterned array of ommatidia. These morphogenetic processes include regulated changes of adhesion between cells.

METHODOLOGY/PRINCIPAL FINDINGS: Here, we show that two transmembrane adhesion proteins, Capricious and Tartan, have dynamic and complementary expression patterns in the eye imaginal disc. We also describe novel null mutations in capricious and double null mutations in capricious and tartan. We report that they have redundant functions in regulating the architecture of the morphogenetic furrow and ommatidial spacing.

CONCLUSIONS/SIGNIFICANCE: We conclude that Capricious and Tartan contribute to the adhesive properties of the cells in the morphogenetic furrow and that this regulated adhesion participates in the control of spacing ommatidial clusters.

摘要

背景

果蝇眼成虫盘的发育需要复杂的上皮细胞重排。形态发生沟处的细胞顶端收缩,这导致上皮出现物理凹陷。在沟的后方,细胞开始重排成不同的簇,最终形成精确排列的小眼阵列。这些形态发生过程包括细胞间黏附的调控变化。

方法/主要发现:在此,我们表明两种跨膜黏附蛋白,多变蛋白(Capricious)和花格蛋白(Tartan),在眼成虫盘中具有动态且互补的表达模式。我们还描述了多变蛋白的新型无效突变以及多变蛋白和花格蛋白的双无效突变。我们报告它们在调节形态发生沟的结构和小眼间距方面具有冗余功能。

结论/意义:我们得出结论,多变蛋白和花格蛋白有助于形态发生沟中细胞的黏附特性,并且这种受调控的黏附参与了小眼簇间距的控制。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/b16f/2265552/da95a6b793f1/pone.0001827.g001.jpg

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