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果蝇胚胎中胚层Notch和Ras信号通路之间的相互调节作用。

Reciprocal regulatory interactions between the Notch and Ras signaling pathways in the Drosophila embryonic mesoderm.

作者信息

Carmena Ana, Buff Eugene, Halfon Marc S, Gisselbrecht Stephen, Jiménez Fernando, Baylies Mary K, Michelson Alan M

机构信息

Program in Molecular Biology, Memorial Sloan-Kettering Cancer Institute, New York, New York 10021, USA.

出版信息

Dev Biol. 2002 Apr 15;244(2):226-42. doi: 10.1006/dbio.2002.0606.

Abstract

Convergent intercellular signals must be precisely integrated in order to elicit specific biological responses. During specification of muscle and cardiac progenitors from clusters of equivalent cells in the Drosophila embryonic mesoderm, the Ras/MAPK pathway--activated by both epidermal and fibroblast growth factor receptors--functions as an inductive cellular determination signal, while lateral inhibition mediated by Notch antagonizes this activity. A critical balance between these signals must be achieved to enable one cell of an equivalence group to segregate as a progenitor while its neighbors assume a nonprogenitor identity. We have investigated whether these opposing signals directly interact with each other, and we have examined how they are integrated by the responding cells to specify their unique fates. Our findings reveal that Ras and Notch do not function independently; rather, we have uncovered several modes of cross-talk between these pathways. Ras induces Notch, its ligand Delta, and the epidermal growth factor receptor antagonist, Argos. We show that Delta and Argos then synergize to nonautonomously block a positive autoregulatory feedback loop that amplifies a fate-inducing Ras signal. This feedback loop is characterized by Ras-mediated upregulation of proximal components of both the epidermal and fibroblast growth factor receptor pathways. In turn, Notch activation in nonprogenitors induces its own expression and simultaneously suppresses both Delta and Argos levels, thereby reinforcing a unidirectional inhibitory response. These reciprocal interactions combine to generate the signal thresholds that are essential for proper specification of progenitors and nonprogenitors from groups of initially equivalent cells.

摘要

为了引发特定的生物学反应,汇聚的细胞间信号必须被精确整合。在果蝇胚胎中胚层中,从等同细胞簇中分化出肌肉和心脏祖细胞的过程中,由表皮生长因子受体和成纤维细胞生长因子受体激活的Ras/MAPK信号通路,作为一种诱导性细胞决定信号发挥作用,而由Notch介导的侧向抑制则拮抗这种活性。必须在这些信号之间达成关键平衡,以使等同细胞群中的一个细胞分化为祖细胞,而其相邻细胞则获得非祖细胞身份。我们研究了这些相互对立的信号是否直接相互作用,并且我们研究了它们如何被响应细胞整合以确定其独特命运。我们的研究结果表明,Ras和Notch并非独立发挥作用;相反,我们发现了这些信号通路之间的几种相互作用模式。Ras诱导Notch、其配体Delta以及表皮生长因子受体拮抗剂Argos。我们表明,Delta和Argos随后协同作用,以非自主方式阻断一个正向自调节反馈回路,该回路放大了诱导命运的Ras信号。这个反馈回路的特征是Ras介导的表皮生长因子受体和成纤维细胞生长因子受体信号通路近端成分的上调。反过来,非祖细胞中的Notch激活诱导其自身表达,同时抑制Delta和Argos的水平,从而加强单向抑制反应。这些相互作用共同产生了信号阈值,这对于从最初等同的细胞群中正确分化出祖细胞和非祖细胞至关重要。

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