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Notch信号通路——一直在动态变化。

Notch signaling--constantly on the move.

作者信息

Nichols James T, Miyamoto Alison, Weinmaster Gerry

机构信息

Department of Biological Chemistry, David Geffen School of Medicine, UCLA, 650 Charles Young Drive South, Los Angeles, CA 90095, USA.

出版信息

Traffic. 2007 Aug;8(8):959-69. doi: 10.1111/j.1600-0854.2007.00592.x. Epub 2007 Jun 5.

Abstract

The Notch pathway is a highly conserved and ubiquitous signaling system that functions in determining a diverse array of cell fates and regulates many cellular processes during embryonic development and throughout adulthood. Links to cancer, stroke and Alzheimer's disease underscore the need to define the molecular basis of Notch activation. Notch signaling is induced through direct cell-cell interactions that promote receptor activation following engagement with a membrane-bound Delta, Serrate, Lag-2 (DSL) ligand on adjacent cells. Cells take on distinct fates because Notch signaling is consistently activated in only one of the two interacting cells, highlighting the importance of establishing and maintaining signaling polarity. Studies in flies and worms have identified positive and negative transcriptional feedback mechanisms that amplify small differences in Notch and DSL ligand expression to bias which cells send or receive signals. However, endocytosis by signal-sending and signal-receiving cells also appears critical for directing and regulating Notch activation. In particular, endocytosis and membrane trafficking of DSL ligands, Notch and modulators can determine the competence of cells to send or receive signals that ensure reproducibility in generating cell types regulated by Notch signaling.

摘要

Notch信号通路是一种高度保守且普遍存在的信号系统,在决定多种细胞命运以及在胚胎发育和整个成年期调节许多细胞过程中发挥作用。与癌症、中风和阿尔茨海默病的关联凸显了确定Notch激活分子基础的必要性。Notch信号通过直接的细胞间相互作用诱导,这种相互作用在与相邻细胞上的膜结合Delta、Serrate、Lag-2(DSL)配体结合后促进受体激活。细胞呈现不同的命运是因为Notch信号仅在两个相互作用细胞中的一个中持续激活,这突出了建立和维持信号极性的重要性。在果蝇和蠕虫中的研究已经确定了正负转录反馈机制,这些机制放大了Notch和DSL配体表达的微小差异,从而使哪些细胞发送或接收信号产生偏差。然而,信号发送细胞和信号接收细胞的内吞作用对于指导和调节Notch激活似乎也至关重要。特别是,DSL配体、Notch和调节剂的内吞作用以及膜运输可以决定细胞发送或接收信号的能力,从而确保在产生由Notch信号调节的细胞类型时的可重复性。

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