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Crossing paths with Notch in the hyper-network.

机译:在超网络中与Notch交叉的路径。

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摘要

The development of complex and diverse metazoan morphologies is coordinated by a surprisingly small number of evolutionarily conserved signaling mechanisms. These signals can act in parallel but often appear to function as an integrated hyper-network. The nodes defining this complex molecular circuitry are poorly understood, but the biological significance of pathway cross-talk is profound. The importance of such large-scale signal integration is exemplified by Notch and its ability to cross-talk with all the major pathways to influence cell differentiation, proliferation, survival and migration. The Notch pathway is, thus, a useful paradigm to illustrate the complexity of pathway cross-talk: its pervasiveness, context dependency, and importance in development and disease.
机译:复杂多样的后生动物形态学的发展由数量少得惊人的进化保守信号机制协调。这些信号可以并行运行,但通常看起来像是一个集成的超网络。定义这种复杂分子电路的节点了解甚少,但是通路串扰的生物学意义却很深远。 Notch及其与所有影响细胞分化,增殖,存活和迁移的主要途径发生串扰的能力证明了这种大规模信号整合的重要性。因此,Notch途径是一种有用的范式,可用来说明途径相互影响的复杂性:其普遍性,背景依赖性以及在发展和疾病中的重要性。

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