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表皮生长因子受体(EGFR)信号梯度的反馈控制:果蝇卵子发生中结构域分裂事件的叠加

Feedback control of the EGFR signaling gradient: superposition of domain-splitting events in Drosophila oogenesis.

作者信息

Zartman Jeremiah J, Kanodia Jitendra S, Cheung Lily S, Shvartsman Stanislav Y

机构信息

Lewis Sigler Institute and Department of Chemical Engineering, Carl Icahn Laboratory, Washington Road, Princeton University, Princeton, NJ 08544, USA.

出版信息

Development. 2009 Sep;136(17):2903-11. doi: 10.1242/dev.039545. Epub 2009 Jul 29.

Abstract

The morphogenesis of structures with repeated functional units, such as body segments and appendages, depends on multi-domain patterns of cell signaling and gene expression. We demonstrate that during Drosophila oogenesis, the two-domain expression pattern of Broad, a transcription factor essential for the formation of the two respiratory eggshell appendages, is established by a single gradient of EGFR activation that induces both Broad and Pointed, which mediates repression of Broad. Two negative-feedback loops provided by the intracellular inhibitors of EGFR signaling, Kekkon-1 and Sprouty, control the number and position of Broad-expressing cells and in this way influence eggshell morphology. Later in oogenesis, the gradient of EGFR activation is split into two smaller domains in a process that depends on Argos, a secreted antagonist of EGFR signaling. In contrast to the previously proposed model of eggshell patterning, we show that the two-domain pattern of EGFR signaling is not essential for specifying the number of appendages. Thus, the processes that define the two-domain patterns of Broad and EGFR activation are distinct; their actions are separated in time and have different effects on eggshell morphology.

摘要

具有重复功能单元的结构(如身体节段和附肢)的形态发生取决于细胞信号传导和基因表达的多结构域模式。我们证明,在果蝇卵子发生过程中,一种对两个呼吸性卵壳附肢形成至关重要的转录因子Broad的双结构域表达模式,是由EGFR激活的单一梯度建立的,该梯度诱导了Broad和Pointed,后者介导对Broad的抑制。由EGFR信号传导的细胞内抑制剂Kekkon-1和Sprouty提供的两个负反馈回路,控制着表达Broad的细胞的数量和位置,从而影响卵壳形态。在卵子发生后期,EGFR激活梯度在一个依赖于Argos(一种EGFR信号传导的分泌拮抗剂)的过程中被分成两个较小的结构域。与先前提出的卵壳图案化模型不同,我们表明EGFR信号传导的双结构域模式对于确定附肢的数量并非必不可少。因此,定义Broad和EGFR激活双结构域模式的过程是不同的;它们的作用在时间上是分开的,并且对卵壳形态有不同的影响。

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