Leonard Jennifer D, Ettensohn Charles A
Department of Biological Sciences, Carnegie Mellon University, 4400 Fifth Avenue, Pittsburgh, PA 15213, USA.
Dev Biol. 2007 Jun 1;306(1):50-65. doi: 10.1016/j.ydbio.2007.02.041. Epub 2007 Mar 6.
Dishevelled (Dsh) is a key signaling molecule in the canonical Wnt pathway. Although the mechanism by which Dsh transduces a Wnt signal remains elusive, the subcellular localization of Dsh may be critical for its function. In the early sea urchin embryo, Dsh is concentrated in punctate structures within the cytoplasm of vegetal blastomeres. In these cells, Dsh stabilizes beta-catenin and causes it to accumulate in nuclei, resulting in the activation of transcriptional gene regulatory networks that drive mesoderm and endoderm formation. Here, we present a systematic mutational analysis of Lytechinus variegatus Dsh (LvDsh) that identifies motifs required for its vegetal cortical localization (VCL). In addition to a previously identified lipid-binding motif near the N-terminus of Dsh (Weitzel, H.E., Illies, M.R., Byrum, C.A., Xu, R., Wikramanayake, A.H., Ettensohn, C.A., 2004. Differential stability of beta-catenin along the animal-vegetal axis of the sea urchin embryo mediated by dishevelled. Development 131, 2947-56), we identify a short (21 amino acid) motif between the PDZ and DEP domains that is required for VCL. Phosphorylation of threonine residues in this region regulates both the targeting and stability of LvDsh. We also identify functional nuclear import and export signals within LvDsh. We provide additional evidence that LvDsh is active locally in the vegetal region of the embryo but is inactive in animal blastomeres and show that the inability of LvDsh to function in animal cells is not a consequence of impaired nuclear import. The DIX domain of LvDsh functions as a potent dominant negative when overexpressed (Weitzel, H.E., Illies, M.R., Byrum, C.A., Xu, R., Wikramanayake, A.H., Ettensohn, C.A., 2004. Differential stability of beta-catenin along the animal-vegetal axis of the sea urchin embryo mediated by dishevelled. Development 131, 2947-56). Here, we show that the dominant negative effect of DIX is dependent on a highly conserved, lipid-binding motif that includes residues K57 and E58. The dominant negative effect of DIX is not a consequence of blocking VCL or the nuclear import of LvDsh. We provide evidence that isolated DIX domains interact with full-length LvDsh in vivo. In addition, we show that the K57/E58 lipid-binding motif of DIX is essential for this interaction. We propose that binding of the isolated DIX domain to full-length Dsh may be facilitated by interactions with lipids, and that this interaction may inhibit signaling by a) preventing endogenous Dsh from interacting with Axin, or b) blocking the ability of Dsh to recruit other proteins, such as GBP/Frat1, to the beta-catenin degradation complex.
蓬乱蛋白(Dsh)是经典Wnt信号通路中的关键信号分子。尽管Dsh转导Wnt信号的机制仍不清楚,但Dsh的亚细胞定位可能对其功能至关重要。在海胆早期胚胎中,Dsh集中在植物性卵裂球细胞质内的点状结构中。在这些细胞中,Dsh使β-连环蛋白稳定并使其在细胞核中积累,从而激活驱动中胚层和内胚层形成的转录基因调控网络。在此,我们对长刺海胆Dsh(LvDsh)进行了系统的突变分析,确定了其植物性皮质定位(VCL)所需的基序。除了先前在Dsh N端附近鉴定出的一个脂质结合基序(Weitzel, H.E., Illies, M.R., Byrum, C.A., Xu, R., Wikramanayake, A.H., Ettensohn, C.A., 2004. 由蓬乱蛋白介导的β-连环蛋白在海胆胚胎动植物轴上的差异稳定性。发育131, 2947 - 56),我们还在PDZ和DEP结构域之间鉴定出一个短的(21个氨基酸)基序,它是VCL所必需的。该区域苏氨酸残基的磷酸化调节LvDsh的靶向和稳定性。我们还在LvDsh中鉴定出功能性的核输入和输出信号。我们提供了额外的证据表明LvDsh在胚胎的植物性区域局部活跃,但在动物性卵裂球中不活跃,并表明LvDsh在动物细胞中无法发挥功能不是核输入受损的结果。LvDsh的DIX结构域在过表达时作为一种有效的显性负性因子发挥作用(Weitzel, H.E., Illies, M.R., Byrum, C.A., Xu, R., Wikramanayake, A.H., Ettensohn, C.A., 2004. 由蓬乱蛋白介导的β-连环蛋白在海胆胚胎动植物轴上的差异稳定性。发育131, 2947 - 56)。在此,我们表明DIX的显性负性作用依赖于一个高度保守的脂质结合基序,该基序包括K57和E58残基。DIX的显性负性作用不是阻断VCL或LvDsh核输入的结果。我们提供证据表明分离的DIX结构域在体内与全长LvDsh相互作用。此外,我们表明DIX的K57/E58脂质结合基序对于这种相互作用至关重要。我们提出,分离的DIX结构域与全长Dsh的结合可能通过与脂质的相互作用而促进,并且这种相互作用可能通过以下方式抑制信号传导:a)阻止内源性Dsh与Axin相互作用,或b)阻断Dsh招募其他蛋白质(如GBP/Frat1)到β-连环蛋白降解复合物的能力。