Song Howard H, Shi Wen, Xiang Yun-Yan, Filmus Jorge
Department of Medical Biophysics, University of Toronto, Ontario, Canada.
J Biol Chem. 2005 Jan 21;280(3):2116-25. doi: 10.1074/jbc.M410090200. Epub 2004 Nov 10.
Loss-of-function mutations of the GPC3 gene are the cause of the human Simpson-Golabi-Behmel syndrome. Based on the overgrowth phenotype of the Simpson-Golabi-Behmel syndrome patients and the key role played by the insulin-like growth factor (IGF) signaling system in regulating embryonic growth, it was speculated that GPC3 regulates IGF signaling. In order to test the validity of this hypothesis, we mated GPC3 knockout mice with insulin receptor substrate-1 (IRS-1) nullizygous mice. We found that GPC3 regulates organism growth independent of IRS-1, suggesting that GPC3 does not modulate IGF signaling. Instead, we found that GPC3 knockout mice exhibit alterations in the Wnt signaling pathway, which is also associated with the regulation of cell proliferation. In particular, the loss of GPC3 led to the inhibition of the non-canonical Wnt/JNK signaling pathway, while concomitantly causing the activation of canonical Wnt/beta-catenin signaling. These in vivo findings were confirmed in vitro upon the ectopic overexpression of GPC3 in mesothelioma cells. In these cells, the GPC3-induced increase in JNK activity was associated with an enhanced response to Wnt5a. Most interestingly, the heparan sulfate chains of GPC3 were not required for its stimulatory activity on Wnt5a signaling and for the formation of GPC3-Wnt5a complexes. We propose that at least in some cell types GPC3 serves as a selective regulator of Wnt signaling, by potentiating non-canonical Wnt signaling, while inhibiting the canonical Wnt signaling pathway.
GPC3基因的功能丧失突变是人类辛普森-戈拉比-贝梅尔综合征的病因。基于辛普森-戈拉比-贝梅尔综合征患者的过度生长表型以及胰岛素样生长因子(IGF)信号系统在调节胚胎生长中所起的关键作用,推测GPC3调节IGF信号传导。为了验证这一假设的有效性,我们将GPC3基因敲除小鼠与胰岛素受体底物-1(IRS-1)基因敲除小鼠进行交配。我们发现GPC3独立于IRS-1调节机体生长,这表明GPC3不调节IGF信号传导。相反,我们发现GPC3基因敲除小鼠的Wnt信号通路发生改变,这也与细胞增殖的调节有关。特别是,GPC3的缺失导致非经典Wnt/JNK信号通路受到抑制,同时导致经典Wnt/β-连环蛋白信号通路激活。在间皮瘤细胞中异位过表达GPC3后,这些体内研究结果在体外得到了证实。在这些细胞中,GPC3诱导的JNK活性增加与对Wnt5a的反应增强有关。最有趣的是,GPC3的硫酸乙酰肝素链对其对Wnt5a信号的刺激活性以及GPC3-Wnt5a复合物的形成并非必需。我们提出,至少在某些细胞类型中,GPC3通过增强非经典Wnt信号传导,同时抑制经典Wnt信号通路,作为Wnt信号的选择性调节剂。