Department of Medicine, University of California, San Diego, La Jolla, CA 92093
Department of Medicine, University of California, San Diego, La Jolla, CA 92093.
Mol Biol Cell. 2017 Dec 1;28(25):3709-3723. doi: 10.1091/mbc.E17-06-0405. Epub 2017 Oct 11.
Cellular proliferation is antagonistically regulated by canonical and noncanonical Wnt signals; their dysbalance triggers cancers. We previously showed that a multimodular signal transducer, Daple, enhances PI3-K→Akt signals within the noncanonical Wnt signaling pathway and antagonistically inhibits canonical Wnt responses. Here we demonstrate that the PI3-K→Akt pathway serves as a positive feedback loop that further enhances noncanonical Wnt signals by compartmentalizing β-catenin. By phosphorylating the phosphoinositide- (PI) binding domain of Daple, Akt abolishes Daple's ability to bind PI3-P-enriched endosomes that engage dynein motor complex for long-distance trafficking of β-catenin/E-cadherin complexes to pericentriolar recycling endosomes (PCREs). Phosphorylation compartmentalizes Daple/β-catenin/E-cadherin complexes to cell-cell contact sites, enhances noncanonical Wnt signals, and thereby suppresses colony growth. Dephosphorylation compartmentalizes β-catenin on PCREs, a specialized compartment for prolonged unopposed canonical Wnt signaling, and enhances colony growth. Cancer-associated Daple mutants that are insensitive to Akt mimic a constitutively dephosphorylated state. This work not only identifies Daple as a platform for cross-talk between Akt and the noncanonical Wnt pathway but also reveals the impact of such cross-talk on tumor cell phenotypes that are critical for cancer initiation and progression.
细胞增殖受到经典和非经典 Wnt 信号的拮抗调节;它们的失衡会引发癌症。我们之前曾表明,一种多模块信号转导蛋白 Daple 在非经典 Wnt 信号通路中增强 PI3-K→Akt 信号,并拮抗抑制经典 Wnt 反应。在这里,我们证明 PI3-K→Akt 途径作为一个正反馈回路,通过区室化β-catenin 进一步增强非经典 Wnt 信号。通过磷酸化 Daple 的磷酸肌醇(PI)结合域,Akt 会使 Daple 失去与富含 PI3-P 的内体结合的能力,这些内体与动力蛋白复合物结合,使 β-catenin/E-cadherin 复合物进行长距离运输到中心体周围的回收内体(PCREs)。磷酸化将 Daple/β-catenin/E-cadherin 复合物区室化到细胞-细胞接触位点,增强非经典 Wnt 信号,并因此抑制集落生长。去磷酸化将β-catenin 区室化到 PCREs 上,PCREs 是一个专门用于延长不受抑制的经典 Wnt 信号的特殊区室,并增强集落生长。对 Akt 不敏感的癌症相关 Daple 突变体模拟出一种持续去磷酸化的状态。这项工作不仅将 Daple 鉴定为 Akt 和非经典 Wnt 途径之间串扰的平台,还揭示了这种串扰对肿瘤细胞表型的影响,这些表型对于癌症的起始和进展至关重要。