膜结构和粘附连接有助于Notch通路的强烈激活

Julia Falo-Sanjuan, S. Bray
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引用次数: 12

摘要

Notch通路介导多种组织、发育阶段和生物体的细胞间通讯。通路激活依赖于跨膜配体和相邻细胞上的受体之间的相互作用。因此,途径活性可能受到膜间接触的大小、组成或动力学的影响。在果蝇胚胎中,Notch信号的启动发生在细胞化过程中,当外侧细胞膜和粘附连接首次沉积时,这使我们能够研究膜结构和特定连接域对信号传导的重要性。通过测量活胚胎中的Notch依赖性转录,我们确定它在侧膜生长时启动,并且信号的开始与它们形成的特定阶段相关。然而,侧膜本身的长度并没有限制。相反,与膜沉积同时聚集的粘附连接促进了转录所需的高水平信号传导,正如α-Catenin耗尽的结果所表明的那样。总之,这些结果表明,侧膜接触的建立可以限制Notch反式激活,并表明粘附连接在调节Notch活性中起重要作用。
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Membrane architecture and adherens junctions contribute to strong Notch pathway activation
The Notch pathway mediates cell-to-cell communication in a variety of tissues, developmental stages and organisms. Pathway activation relies on the interaction between transmembrane ligands and receptors on adjacent cells. As such, pathway activity could be influenced by the size, composition or dynamics of contacts between membranes. The initiation of Notch signalling in the Drosophila embryo occurs during cellularization, when lateral cell membranes and adherens junctions are first being deposited, allowing us to investigate the importance of membrane architecture and specific junctional domains for signaling. By measuring Notch dependent transcription in live embryos we established that it initiates while lateral membranes are growing and that signalling onset correlates with a specific phase in their formation. However, the length of the lateral membranes per se was not limiting. Rather, the adherens junctions, which assemble concurrently with membrane deposition, contributed to the high levels of signalling required for transcription, as indicated by the consequences from depleting α-Catenin. Together, these results demonstrate that the establishment of lateral membrane contacts can be limiting for Notch trans-activation and suggest that adherens junctions play an important role in modulating Notch activity.
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