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通过 DIX 结构域蛋白 Ccd1 激活 Wnt 的分子基础。

Molecular basis of Wnt activation via the DIX domain protein Ccd1.

机构信息

From the MOE Key Laboratory of Bioinformatics, School of Life Sciences, Tsinghua University, Beijing 100084, China.

the Institute of Biophysics, Chinese Academy of Sciences, Beijing 100101, China, and.

出版信息

J Biol Chem. 2011 Mar 11;286(10):8597-8608. doi: 10.1074/jbc.M110.186742. Epub 2010 Dec 28.

Abstract

The Wnt signaling plays pivotal roles in embryogenesis and cancer, and the three DIX domain-containing proteins, Dvl, Axin, and Ccd1, play distinct roles in the initiation and regulation of canonical Wnt signaling. Overexpressed Dvl has a tendency to form large polymers in a cytoplasmic punctate pattern, whereas the biologically active Dvl in fact forms low molecular weight oligomers. The molecular basis for how the polymeric sizes of Dvl proteins are controlled upon Wnt signaling remains unclear. Here we show that Ccd1 up-regulates canonical Wnt signaling via acting synergistically with Dvl. We determined the crystal structures of wild type Ccd1-DIX and mutant Dvl1-DIX(Y17D), which pack into "head-to-tail" helical filaments. Structural analyses reveal two sites crucial for intra-filament homo- and hetero-interaction and a third site for inter-filament homo-assembly. Systematic mutagenesis studies identified critical residues from all three sites required for Dvl homo-oligomerization, puncta formation, and stimulation of Wnt signaling. Remarkably, Ccd1 forms a hetero-complex with Dvl through the "head" of Dvl-DIX and the "tail" of Ccd1-DIX, depolymerizes Dvl homo-assembly, and thereby controls the size of Dvl polymer. These data together suggest a molecular mechanism for Ccd1-mediated Wnt activation in that Ccd1 converts latent polymeric Dvl to a biologically active oligomer(s).

摘要

Wnt 信号在胚胎发生和癌症中起着关键作用,三个含有 DIX 结构域的蛋白质,Dvl、Axin 和 Ccd1,在经典 Wnt 信号的起始和调节中发挥不同的作用。过表达的 Dvl 倾向于在细胞质点状模式下形成大聚合物,而实际上具有生物活性的 Dvl 形成低分子量寡聚物。Wnt 信号调控 Dvl 蛋白聚合大小的分子基础尚不清楚。在这里,我们显示 Ccd1 通过与 Dvl 协同作用来上调经典的 Wnt 信号。我们测定了野生型 Ccd1-DIX 和突变体 Dvl1-DIX(Y17D)的晶体结构,它们包装成“头到尾”的螺旋丝。结构分析揭示了两个对丝状内同型和异型相互作用至关重要的位点,以及第三个对丝状内同源组装至关重要的位点。系统的突变研究确定了所有三个位点的关键残基,这些残基对于 Dvl 同型寡聚、斑点形成和 Wnt 信号的刺激都是必需的。值得注意的是,Ccd1 通过 Dvl-DIX 的“头”和 Ccd1-DIX 的“尾”与 Dvl 形成异源复合物,解聚 Dvl 同型组装,从而控制 Dvl 聚合物的大小。这些数据共同提出了 Ccd1 介导的 Wnt 激活的分子机制,即 Ccd1 将潜伏的聚合 Dvl 转化为具有生物活性的寡聚物。

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