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Wingless Signaling: A Genetic Journey from Morphogenesis to Metastasis

机译:无翼信号:从形态发生到转移的遗传之旅

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摘要

This FlyBook chapter summarizes the history and the current state of our understanding of the Wingless signaling pathway. Wingless, the fly homolog of the mammalian Wnt oncoproteins, plays a central role in pattern generation during development. Much of what we know about the pathway was learned from genetic and molecular experiments in Drosophila melanogaster, and the core pathway works the same way in vertebrates. Like most growth factor pathways, extracellular Wingless/Wnt binds to a cell surface complex to transduce signal across the plasma membrane, triggering a series of intracellular events that lead to transcriptional changes in the nucleus. Unlike most growth factor pathways, the intracellular events regulate the protein stability of a key effector molecule, in this case Armadillo/β-catenin. A number of mysteries remain about how the “destruction complex” destabilizes β-catenin and how this process is inactivated by the ligand-bound receptor complex, so this review of the field can only serve as a snapshot of the work in progress.
机译:这本FlyBook章节总结了我们对Wingless信号通路的了解的历史和当前状态。哺乳动物Wnt癌蛋白的无翅同系物在发育过程中的模式产生中起着核心作用。我们从果蝇的果蝇的遗传和分子实验中学到了许多关于该途径的知识,而核心途径在脊椎动物中的作用方式相同。像大多数生长因子途径一样,细胞外Wingless / Wnt与细胞表面复合物结合,从而跨质膜转导信号,从而引发一系列细胞内事件,从而导致细胞核的转录变化。与大多数生长因子途径不同,细胞内事件调节关键效应分子(在这种情况下为犰狳/β-catenin)的蛋白质稳定性。关于“破坏复合物”如何使β-catenin不稳定以及配体结合受体复合物如何使这一过程失活,仍然存在许多谜团,因此对这一领域的评论只能作为正在进行中工作的快照。

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