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Groucho 磷酸化介导 RTK 反馈抑制和延长途径靶基因表达。

Phosphorylation of Groucho mediates RTK feedback inhibition and prolonged pathway target gene expression.

机构信息

Department of Developmental Biology and Cancer Research, Institute of Medical Research Israel-Canada, Faculty of Medicine, The Hebrew University of Jerusalem, Jerusalem 91120, Israel.

出版信息

Curr Biol. 2011 Jul 12;21(13):1102-10. doi: 10.1016/j.cub.2011.05.043. Epub 2011 Jun 16.

Abstract

BACKGROUND

Signaling by receptor tyrosine kinase (RTK) pathways plays fundamental roles in processes of cell-fate determination, often through the induction of specific transcriptional responses. Yet it is not fully understood how continuous target gene expression, required for irreversible cell-fate specification, is preserved after RTK signaling has ended. Here we address this question using the Drosophila embryo, a model system that has been instrumental in elucidating the developmental functions of RTK signal transduction.

RESULTS

The Groucho corepressor is phosphorylated and downregulated in response to RTK signaling. Here we show that RTK pathways use Groucho phosphorylation as a general mechanism for inducing expression of pathway target genes encoding cell-fate determinants as well as feedback antagonists, indicating that relief of Groucho-dependent repression is an integral element of RTK signaling networks. We further demonstrate that after mitogen-activated protein kinase (MAPK) has been deactivated, sustained phosphorylation of Groucho is essential for persistent RTK-induced target gene expression and cell-fate determination in several developmental contexts.

CONCLUSIONS

Phosphorylation of Groucho by MAPK plays a dual role in the regulation of RTK responses: (1) it mediates rapid feedback inhibition, and (2) it provides a stable memory mechanism of past MAPK activity. We propose that, in this manner, phosphorylation of Groucho enables transiently active RTK pathways to fix the spatiotemporal expression profiles of downstream targets over time.

摘要

背景

受体酪氨酸激酶 (RTK) 信号通路的信号转导在细胞命运决定的过程中起着至关重要的作用,通常是通过诱导特定的转录反应来实现的。然而,人们并不完全了解,在 RTK 信号转导结束后,如何维持细胞命运特化所必需的持续靶基因表达。在这里,我们使用果蝇胚胎作为模型系统来解决这个问题,该模型系统在阐明 RTK 信号转导的发育功能方面发挥了重要作用。

结果

Groucho 核心抑制因子在 RTK 信号的作用下发生磷酸化并下调。在这里,我们表明 RTK 途径将 Groucho 磷酸化作为诱导编码细胞命运决定因子以及反馈拮抗剂的途径靶基因表达的一般机制,表明 Groucho 依赖性抑制的缓解是 RTK 信号网络的一个组成部分。我们进一步证明,在丝裂原活化蛋白激酶 (MAPK) 失活后,Groucho 的持续磷酸化对于在几个发育背景下持续的 RTK 诱导的靶基因表达和细胞命运决定是必不可少的。

结论

MAPK 对 Groucho 的磷酸化在 RTK 反应的调节中起双重作用:(1) 它介导快速的反馈抑制,(2) 它提供了 MAPK 活性的稳定记忆机制。我们提出,通过这种方式,Groucho 的磷酸化使瞬时活跃的 RTK 途径能够随着时间的推移固定下游靶标的时空表达谱。

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