Department of Structural Biology, St Jude Children’s Research Hospital, Memphis, Tennessee 38105, USA.
J Biol Chem. 2010 Dec 31;285(53):41549-56. doi: 10.1074/jbc.M110.193383. Epub 2010 Nov 2.
Wnt signaling pathways are involved in embryonic development and adult tissue maintenance and have been implicated in tumorigenesis. Dishevelled (Dvl/Dsh) protein is one of key components in Wnt signaling and plays essential roles in regulating these pathways through protein-protein interactions. Identifying and characterizing Dvl-binding proteins are key steps toward understanding biological functions. Given that the tripeptide VWV (Val-Trp-Val) binds to the PDZ domain of Dvl, we searched publically available databases to identify proteins containing the VWV motif at the C terminus that could be novel Dvl-binding partners. On the basis of the cellular localization and expression patterns of the candidates, we selected for further study the TMEM88 (target protein transmembrane 88), a two-transmembrane-type protein. The interaction between the PDZ domain of Dvl and the C-terminal tail of TMEM88 was confirmed by using NMR and fluorescence spectroscopy. Furthermore, in HEK293 cells, TMEM88 attenuated the Wnt/β-catenin signaling induced by Wnt-1 ligand in a dose-dependent manner, and TMEM88 knockdown by RNAi increased Wnt activity. In Xenopus, TMEM88 protein is sublocalized at the cell membrane and inhibits Wnt signaling induced by Xdsh but not β-catenin. In addition, TMEM88 protein inhibits the formation of a secondary axis normally induced by Xdsh. The findings suggest that TMEM88 plays a role in regulating Wnt signaling. Indeed, analysis of microarray data revealed that the expression of the Tmem88 gene was strongly correlated with that of Wnt signaling-related genes in embryonic mouse intestines. Together, we propose that TMEM88 associates with Dvl proteins and regulates Wnt signaling in a context-dependent manner.
Wnt 信号通路参与胚胎发育和成人组织维持,并与肿瘤发生有关。Dishevelled(Dvl/Dsh)蛋白是 Wnt 信号的关键组成部分之一,通过蛋白-蛋白相互作用在调节这些途径中发挥重要作用。鉴定和表征 Dvl 结合蛋白是理解生物学功能的关键步骤。鉴于三肽 VWV(缬氨酸-色氨酸-缬氨酸)与 Dvl 的 PDZ 结构域结合,我们搜索了公开可用的数据库,以鉴定在 C 末端包含 VWV 基序的蛋白质,这些蛋白质可能是新的 Dvl 结合伙伴。根据候选物的细胞定位和表达模式,我们选择进一步研究 TMEM88(靶蛋白跨膜 88),这是一种双跨膜型蛋白。Dvl 的 PDZ 结构域与 TMEM88 的 C 末端尾巴之间的相互作用通过 NMR 和荧光光谱学得到证实。此外,在 HEK293 细胞中,TMEM88 以剂量依赖的方式减弱 Wnt-1 配体诱导的 Wnt/β-catenin 信号,并且 RNAi 敲低 TMEM88 增加了 Wnt 活性。在 Xenopus 中,TMEM88 蛋白亚定位在细胞膜上,并抑制由 Xdsh 但不是β-catenin 诱导的 Wnt 信号。此外,TMEM88 蛋白抑制由 Xdsh 正常诱导的二级轴的形成。这些发现表明 TMEM88 在调节 Wnt 信号中起作用。事实上,微阵列数据分析表明,Tmem88 基因的表达与胚胎小鼠肠道中 Wnt 信号相关基因的表达强烈相关。总之,我们提出 TMEM88 与 Dvl 蛋白结合,并以依赖于上下文的方式调节 Wnt 信号。