Department of Biological Science, Sookmyung Women's University, Chungpa-Dong 2-Ka, Yongsan-Ku, Seoul 140-742, South Korea.
Mol Cell Biol. 2010 Apr;30(7):1582-92. doi: 10.1128/MCB.01605-09. Epub 2010 Jan 25.
We recently reported that the phosphotyrosine-binding (PTB) domain of Anks family proteins binds to EphA8, thereby positively regulating EphA8-mediated signaling pathways. In the current study, we identified a potential role for the SAM domains of Anks family proteins in EphA signaling. We found that SAM domains of Anks family proteins directly bind to ubiquitin, suggesting that Anks proteins regulate the degradation of ubiquitinated EphA receptors. Consistent with the role of Cbl ubiquitin ligases in the degradation of Eph receptors, our results revealed that the ubiquitin ligase c-Cbl induced the ubiquitination and degradation of EphA8 upon ligand binding. Ubiquitinated EphA8 also bound to the SAM domains of Odin, a member of the Anks family proteins. More importantly, the overexpression of wild-type Odin protected EphA8 and EphA2 from undergoing degradation following ligand stimulation and promoted EphA-mediated inhibition of cell migration. In contrast, a SAM domain deletion mutant of Odin strongly impaired the function of endogenous Odin, suggesting that the mutant functions in a dominant-negative manner. An analysis of Odin-deficient primary embryonic fibroblasts indicated that Odin levels play a critical role in regulating the stability of EphA2 in response to ligand stimulation. Taken together, our studies suggest that the SAM domains of Anks family proteins play a pivotal role in enhancing the stability of EphA receptors by modulating the ubiquitination process.
我们最近报道称,Anks 家族蛋白的磷酸酪氨酸结合(PTB)结构域与 EphA8 结合,从而正向调节 EphA8 介导的信号通路。在本研究中,我们确定了 Anks 家族蛋白的 SAM 结构域在 Eph 信号中的潜在作用。我们发现 Anks 家族蛋白的 SAM 结构域直接与泛素结合,这表明 Anks 蛋白调节泛素化 EphA 受体的降解。与 Cbl 泛素连接酶在 Eph 受体降解中的作用一致,我们的结果表明,在配体结合后,泛素连接酶 c-Cbl 诱导 EphA8 的泛素化和降解。泛素化的 EphA8 也与 Odin 的 SAM 结构域结合,Odin 是 Anks 家族蛋白的成员之一。更重要的是,野生型 Odin 的过表达可保护 EphA8 和 EphA2 在受到配体刺激后不被降解,并促进 EphA 介导的细胞迁移抑制。相比之下,Odin 的 SAM 结构域缺失突变体强烈削弱了内源性 Odin 的功能,表明该突变体以显性负性方式发挥作用。对 Odin 缺陷型原代胚胎成纤维细胞的分析表明,Odin 水平在调节 EphA2 对配体刺激的稳定性方面起着关键作用。总之,我们的研究表明,Anks 家族蛋白的 SAM 结构域通过调节泛素化过程,在增强 EphA 受体的稳定性方面发挥着关键作用。