A cellular tilting mechanism important for dynamic tissue shape changes and cell differentiation in Drosophila

IF 10.7 1区 生物学 Q1 CELL BIOLOGY Developmental cell Pub Date : 2024-04-30 DOI:10.1016/j.devcel.2024.04.011
Liyuan Sui, Christian Dahmann
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Abstract

Dynamic changes in three-dimensional cell shape are important for tissue form and function. In the developing Drosophila eye, photoreceptor differentiation requires the progression across the tissue of an epithelial fold known as the morphogenetic furrow. Morphogenetic furrow progression involves apical cell constriction and movement of apical cell edges. Here, we show that cells progressing through the morphogenetic furrow move their basal edges in opposite direction to their apical edges, resulting in a cellular tilting movement. We further demonstrate that cells generate, at their basal side, oriented, force-generating protrusions. Knockdown of the protein kinase Src42A or photoactivation of a dominant-negative form of the small GTPase Rac1 reduces protrusion formation. Impaired protrusion formation stalls basal cell movement and slows down morphogenetic furrow progression and photoreceptor differentiation. This work identifies a cellular tilting mechanism important for the generation of dynamic tissue shape changes and cell differentiation.

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对果蝇动态组织形状变化和细胞分化非常重要的细胞倾斜机制
三维细胞形状的动态变化对组织形态和功能非常重要。在果蝇眼睛的发育过程中,感光器的分化需要上皮褶皱(即形态发生沟)在组织中的进展。形态发生沟的进展涉及顶端细胞收缩和顶端细胞边缘的移动。在这里,我们发现细胞在形态发生沟中的基底边缘移动方向与其顶端边缘移动方向相反,从而导致细胞倾斜运动。我们进一步证明,细胞在其基底侧产生定向的、可产生力的突起。敲除蛋白激酶 Src42A 或光激活显性阴性形式的小 GTP 酶 Rac1 可减少突起的形成。突起形成受阻会阻碍基底细胞的运动,并减缓形态发生沟的进展和感光器的分化。这项研究发现了一种细胞倾斜机制,它对动态组织形状变化和细胞分化的产生非常重要。
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来源期刊
Developmental cell
Developmental cell 生物-发育生物学
CiteScore
18.90
自引率
1.70%
发文量
203
审稿时长
3-6 weeks
期刊介绍: Developmental Cell, established in 2001, is a comprehensive journal that explores a wide range of topics in cell and developmental biology. Our publication encompasses work across various disciplines within biology, with a particular emphasis on investigating the intersections between cell biology, developmental biology, and other related fields. Our primary objective is to present research conducted through a cell biological perspective, addressing the essential mechanisms governing cell function, cellular interactions, and responses to the environment. Moreover, we focus on understanding the collective behavior of cells, culminating in the formation of tissues, organs, and whole organisms, while also investigating the consequences of any malfunctions in these intricate processes.
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