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表皮生长因子诱导的表皮生长因子受体酪氨酸激酶活性/基质金属蛋白酶-28通过拮抗Ets转录因子Pointed来调节表皮生长因子介导的诱导作用。

EDL/MAE regulates EGF-mediated induction by antagonizing Ets transcription factor Pointed.

作者信息

Yamada Takuma, Okabe Masataka, Hiromi Yasushi

机构信息

Department of Developmental Genetics, National Institute of Genetics, Shizuoka 411-8540, Japan.

出版信息

Development. 2003 Sep;130(17):4085-96. doi: 10.1242/dev.00624.

Abstract

Inductive patterning mechanisms often use negative regulators to coordinate the effects and efficiency of induction. During Spitz EGF-mediated neuronal induction in the Drosophila compound eye and chordotonal organs, Spitz causes activation of Ras signaling in the induced cells, resulting in the activation of Ets transcription factor Pointed P2. We describe developmental roles of a novel negative regulator of Ras signaling, EDL/MAE, a protein with an Ets-specific Pointed domain but not an ETS DNA-binding domain. The loss of EDL/MAE function results in reduced number of photoreceptor neurons and chordotonal organs, suggesting a positive role in the induction by Spitz EGF. However, EDL/MAE functions as an antagonist of Pointed P2, by binding to its Pointed domain and abolishing its transcriptional activation function. Furthermore, edl/mae appears to be specifically expressed in cells with inducing ability. This suggests that inducing cells, which can respond to Spitz they themselves produce, must somehow prevent activation of Pointed P2. Indeed hyperactivation of Pointed P2 in inducing cells interferes with their inducing ability, resulting in the reduction in inducing ability. We propose that EDL/MAE blocks autocrine activation of Pointed P2 so that inducing cells remain induction-competent. Inhibition of inducing ability by Pointed probably represents a novel negative feedback system that can prevent uncontrolled spread of induction of similar cell fates.

摘要

诱导模式形成机制通常利用负调控因子来协调诱导的效应和效率。在果蝇复眼和弦音器官中,由Spitz EGF介导的神经元诱导过程中,Spitz会导致诱导细胞中Ras信号的激活,从而激活Ets转录因子Pointed P2。我们描述了一种新型Ras信号负调控因子EDL/MAE的发育作用,它是一种具有Ets特异性Pointed结构域但不具有ETS DNA结合结构域的蛋白质。EDL/MAE功能的缺失导致光感受器神经元和弦音器官数量减少,表明其在Spitz EGF诱导过程中发挥正向作用。然而,EDL/MAE通过结合Pointed P2的Pointed结构域并消除其转录激活功能,作为Pointed P2的拮抗剂发挥作用。此外,edl/mae似乎在具有诱导能力的细胞中特异性表达。这表明能够对自身产生的Spitz作出反应的诱导细胞,必须以某种方式阻止Pointed P2的激活。实际上诱导细胞中Pointed P2的过度激活会干扰它们的诱导能力,导致诱导能力下降。我们提出EDL/MAE阻断Pointed P2的自分泌激活,从而使诱导细胞保持诱导能力。Pointed对诱导能力的抑制可能代表了一种新型的负反馈系统,它可以防止相似细胞命运诱导的不受控制的扩散。

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