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MAP 激酶对 Ind 的磷酸化增强了 Ind 依赖性转录抑制。

Phosphorylation of Ind by MAP kinase enhances Ind-dependent transcriptional repression.

机构信息

Kansas State University, College of Veterinary Medicine, Diagnostic Medicine and Pathobiology, Manhattan, KS 66506, USA.

出版信息

Dev Biol. 2011 Dec 1;360(1):208-15. doi: 10.1016/j.ydbio.2011.09.022. Epub 2011 Sep 29.

Abstract

The Drosophila neuroectoderm is initially subdivided into three longitudinal domains that give rise to columns of neuroblasts. This subdivision is coordinately accomplished by the action of the signaling pathways, Dorsal and Epidermal Growth Factor Receptor (EGFR), in conjunction with the homeodomain proteins, Ventral nervous system defective, Intermediate neuroblasts defective (Ind) and Muscle Segment Homeobox. We previously demonstrated that Ind expression is activated in response to the EGFR pathway. Here we show that EGF signaling subsequently mediates the direct phosphorylation of Ind by MAP kinase, which enhances the capacity of Ind to repress target genes, such as achaete. Specifically, we show that reduced EGF signaling results in diminished repression of achaete in the intermediate column, despite the presence of high levels of Ind protein. We also demonstrate that ectopic activation of MAP kinase results in the lateral expansion of the Ind expression domain with a corresponding reduction in achaete expression. This regulation is also dependent on the co-repressor, Dichaete. Our data indicate that EGF signaling, acting through MAP kinase, impinges on multiple aspects of Ind regulatory activity. While it has been often demonstrated that MAP kinase phosphorylation of transcriptional repressors attenuates their repressor activity, here we provide an example of phosphorylation enhancing repressor activity.

摘要

果蝇神经外胚层最初被细分为三个纵向区域,这些区域产生神经母细胞列。这种细分是由信号通路 Dorsal 和表皮生长因子受体 (EGFR) 与同源域蛋白 Ventral nervous system defective、Intermediate neuroblasts defective (Ind) 和 Muscle Segment Homeobox 的协同作用完成的。我们之前证明 Ind 表达是响应 EGFR 途径而被激活的。在这里,我们表明 EGF 信号随后通过 MAP 激酶介导 Ind 的直接磷酸化,这增强了 Ind 抑制靶基因(如achaete)的能力。具体来说,我们表明,尽管存在高水平的 Ind 蛋白,但减少 EGF 信号会导致中间列中 achaete 的抑制作用减弱。我们还证明,MAP 激酶的异位激活导致 Ind 表达域的侧向扩展,achaete 的表达相应减少。这种调节也依赖于共抑制因子 Dichaete。我们的数据表明,EGF 信号通过 MAP 激酶作用于 Ind 调节活性的多个方面。虽然已经证明 MAP 激酶对转录抑制剂的磷酸化会减弱其抑制剂活性,但在这里我们提供了一个磷酸化增强抑制剂活性的例子。

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