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首页> 外文期刊>Genetics: A Periodical Record of Investigations Bearing on Heredity and Variation >An Unconventional Nuclear Localization Motif Is Crucial for Function of the Drosophila Wnt/Wingless Antagonist Naked Cuticle
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An Unconventional Nuclear Localization Motif Is Crucial for Function of the Drosophila Wnt/Wingless Antagonist Naked Cuticle

机译:非常规核定位母题对果蝇Wnt /无翅拮抗剂裸角质层的功能至关重要

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摘要

Wnt/β-catenin signals orchestrate cell fate and behavior throughout the animal kingdom. Aberrant Wnt signaling impacts nearly the entire spectrum of human disease, including birth defects, cancer, and osteoporosis. If Wnt signaling is to be effectively manipulated for therapeutic advantage, we first must understand how Wnt signals are normally controlled. Naked cuticle (Nkd) is a novel and evolutionarily conserved inducible antagonist of Wnt/β-catenin signaling that is crucial for segmentation in the model genetic organism, the fruit fly Drosophila melanogaster . Nkd can bind and inhibit the Wnt signal transducer Dishevelled (Dsh), but the mechanism by which Nkd limits Wnt signaling in the fly embryo is not understood. Here we show that nkd mutants exhibit elevated levels of the β-catenin homolog Armadillo but no alteration in Dsh abundance or distribution. In the fly embryo, Nkd and Dsh are predominantly cytoplasmic, although a recent report suggests that vertebrate Dsh requires nuclear localization for activity in gain-of-function assays. While Dsh-binding regions of Nkd contribute to its activity, we identify a conserved 30-amino-acid motif, separable from Dsh-binding regions, that is essential for Nkd function and nuclear localization. Replacement of the 30-aa motif with a conventional nuclear localization sequence rescued a small fraction of nkd mutant animals to adulthood. Our studies suggest that Nkd targets Dsh-dependent signal transduction steps in both cytoplasmic and nuclear compartments of cells receiving the Wnt signal.
机译:Wnt /β-catenin信号协调整个动物界的细胞命运和行为。 Wnt异常信号几乎影响人类疾病的整个范围,包括先天缺陷,癌症和骨质疏松症。如果要有效地控制Wnt信号以取得治疗优势,我们首先必须了解如何正常控制Wnt信号。裸角质层(Nkd)是Wnt /β-catenin信号传导的一种新型且进化上保守的诱导型拮抗剂,对模型遗传生物果蝇果蝇的细分至关重要。 Nkd可以结合并抑制Wnt信号转导子Disheveled(Dsh),但是Nkd限制果蝇胚胎中Wnt信号传导的机制尚不清楚。在这里,我们显示nkd突变体表现出高水平的β-catenin同源物犰狳,但Dsh丰度或分布没有变化。在蝇蝇胚胎中,Nkd和Dsh主要是细胞质,尽管最近的报告表明脊椎动物Dsh在功能获得试验中需要核定位才能发挥活性。虽然Nkd的Dsh结合区有助于其活性,但我们确定了一个与Dsh结合区分开的保守的30个氨基酸的基序,这对Nkd的功能和核定位至关重要。用常规的核定位序列替换30-aa基序将一小部分nkd突变动物挽救了成年。我们的研究表明,Nkd靶向接收Wnt信号的细胞的细胞质和核区室中Dsh依赖性信号转导步骤。

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