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Axin和Dishevelled DIX结构域的结构与功能决定因素。

The structural and functional determinants of the Axin and Dishevelled DIX domains.

作者信息

Ehebauer Matthias T, Arias Alfonso Martinez

机构信息

European Molecular Biology Laboratory, Notkestrasse 85, 22603 Hamburg, Germany.

出版信息

BMC Struct Biol. 2009 Nov 12;9:70. doi: 10.1186/1472-6807-9-70.

Abstract

BACKGROUND

The dishevelled and axin genes encode multi-domain proteins that play key roles in WNT signalling. Dishevelled prevents beta-catenin degradation by interfering with the interaction of beta-catenin with the degradation-mediating Axin-APC-GSK3beta complex. This interference leads to an accumulation of cytoplasmic beta-catenin, which enters the nucleus and interacts with transcription factors that induce expression of Wnt-target genes. Axin, as a component of the degradation-mediating complex, is a potent negative regulator of Wnt signalling, whereas Dishevelled is a potent activator. Both Dishevelled and Axin possess a DIX (Dishevelled/Axin) domain, which mediates protein-protein interactions, specifically homodimerization.

RESULTS

An evolutionary trace analysis of DIX domains identified conserved residues which, when mapped onto the crystal structure of the Axin DIX domain and a comparative model of the Dishevelled DIX domain, allow their categorization as residues of either structural or functional importance. We identify residues that are structural and functional determinants of the DIX domain fold, as well as those that are specific to homodimerization of Axin and Dishevelled.

CONCLUSION

This report provides the first explanation of the mutant phenotypes caused by non-synonymous substitutions in the Dishevelled and Axin DIX domain by correlating their presumed functional significance with molecular structure.

摘要

背景

散乱蛋白(Dishevelled)和轴蛋白(Axin)基因编码的多结构域蛋白在WNT信号通路中发挥关键作用。散乱蛋白通过干扰β-连环蛋白与降解介导的Axin-APC-GSK3β复合物的相互作用来阻止β-连环蛋白的降解。这种干扰导致细胞质中β-连环蛋白的积累,β-连环蛋白进入细胞核并与诱导Wnt靶基因表达的转录因子相互作用。轴蛋白作为降解介导复合物的一个组成部分,是Wnt信号通路的有效负调节因子,而散乱蛋白是有效激活因子。散乱蛋白和轴蛋白都具有一个DIX(Dishevelled/Axin)结构域,该结构域介导蛋白质-蛋白质相互作用,特别是同源二聚化。

结果

对DIX结构域的进化追踪分析确定了保守残基,当将这些残基映射到轴蛋白DIX结构域的晶体结构和散乱蛋白DIX结构域的比较模型上时,可将它们归类为具有结构或功能重要性的残基。我们确定了作为DIX结构域折叠的结构和功能决定因素的残基,以及轴蛋白和散乱蛋白同源二聚化特有的残基。

结论

本报告通过将假定的功能重要性与分子结构相关联,首次解释了由散乱蛋白和轴蛋白DIX结构域中的非同义替换引起的突变表型。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/723c/2780430/ddc5d0fe07a9/1472-6807-9-70-1.jpg

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