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果蝇卵泡上皮形态发生中fos/kayak基因对Top-DER和Dpp的依赖性需求。

Top-DER- and Dpp-dependent requirements for the Drosophila fos/kayak gene in follicular epithelium morphogenesis.

作者信息

Dequier E, Souid S, Pál M, Maróy P, Lepesant J A, Yanicostas C

机构信息

Department of Developmental Biology, Institut Jacques Monod, UMR 7592, CNRS, Université Paris 7 Denis-Diderot and Université Paris 6 Pierre et Marie Curie, 2, Place Jussieu, F-75251 Cedex 05, Paris, France.

出版信息

Mech Dev. 2001 Aug;106(1-2):47-60. doi: 10.1016/s0925-4773(01)00418-x.

Abstract

The Drosophila fos (Dfos)/kayak gene has been previously identified as a key regulator of epithelial cell morphogenesis during dorsal closure of the embryo and fusion of the adult thorax. We show here that it is also required for two morphogenetic movements of the follicular epithelium during oogenesis. Firstly, it is necessary for the proper posteriorward migration of main body follicle cells during stage 9. Secondly, it controls, from stage 11 onwards, the morphogenetic reorganization of the follicle cells that are committed to secrete the respiratory appendages. We demonstrate that DER pathway activation and a critical level of Dpp/TGFbeta signalling are required to pattern a high level of transcription of Dfos at the anterior and dorsal edges of the two groups of cells that will give rise to the respiratory appendages. In addition, we provide evidence that, within the dorsal-anterior territory, the level of paracrine Dpp/TGFbeta signalling controls the commitment of follicle cells towards either an operculum or an appendage secretion fate. Finally, we show that Dfos is required in follicle cells for the dumping of the nurse cell cytoplasm into the oocyte and the subsequent apoptosis of nurse cells. This suggests that in somatic follicle cells, Dfos controls the expression of one or several factors that are necessary for these processes in underlying germinal nurse cells.

摘要

果蝇fos(Dfos)/kayak基因先前已被确定为胚胎背侧闭合和成虫胸部融合过程中上皮细胞形态发生的关键调节因子。我们在此表明,它在卵子发生过程中卵泡上皮的两种形态发生运动中也是必需的。首先,它对于第9阶段主体卵泡细胞正确向后迁移是必要的。其次,从第11阶段开始,它控制着致力于分泌呼吸附属物的卵泡细胞的形态发生重组。我们证明,DER途径激活和关键水平的Dpp/TGFβ信号传导是在将产生呼吸附属物的两组细胞的前缘和背缘形成高水平Dfos转录所必需的。此外,我们提供证据表明,在背侧前部区域内,旁分泌Dpp/TGFβ信号传导水平控制卵泡细胞向盖或附属物分泌命运的定向。最后,我们表明卵泡细胞中需要Dfos将滋养细胞细胞质倾倒入卵母细胞并随后使滋养细胞凋亡。这表明在体细胞卵泡细胞中,Dfos控制着这些过程在潜在的生殖滋养细胞中所需的一种或几种因子的表达。

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