Lao Dieu-Hung, Chandramouli Sumana, Yusoff Permeen, Fong Chee Wai, Saw Tzuen Yih, Tai Lai Peng, Yu Chye Yun, Leong Hwei Fen, Guy Graeme R
Institute of Molecular and Cell Biology, 61 Biopolis Drive, Proteos, Singapore 138673.
J Biol Chem. 2006 Oct 6;281(40):29993-30000. doi: 10.1074/jbc.M604044200. Epub 2006 Aug 7.
Because the Sprouty (Spry) proteins were shown to be inhibitors of the mainstream Ras/ERK pathway, there has been considerable interest in ascertaining their mechanism of action especially since a possible role as tumor suppressors for these inhibitory proteins has been suggested. We compared the ability of the mammalian Spry isoforms to inhibit the Ras/ERK pathway in the context of fibroblast growth factor receptor (FGFR) signaling. Spry2 is considerably more inhibitory than Spry1 or Spry4, and this correlates with the binding to Grb2 via a C-terminal proline-rich sequence that is found exclusively on Spry2. This PXXPXR motif binds directly to the N-terminal Src homology domain 3 of Grb2, and when added onto the C terminus of Spry4 the resultant chimera inhibits the Ras/ERK pathway. The ability to inhibit neurite outgrowth in PC-12 cells correlates with the propensity of Spry isoforms and engineered constructs to inhibit the phosphorylation of ERK1/2. The PXXPXR motif is cryptic in unstimulated cells, and it is postulated that Spry2 undergoes a conformational change following FGFR stimulation, enabling the subsequent interaction with Grb2. We present evidence that Spry2 can compete with the RasGEF (guanine nucleotide exchange factor) SOS1 for binding to Grb2, resulting in the inhibition of phosphorylation of ERK1/2.
由于Sprouty(Spry)蛋白被证明是主流Ras/ERK途径的抑制剂,人们对确定其作用机制产生了浓厚兴趣,特别是因为这些抑制性蛋白可能具有肿瘤抑制作用。我们比较了哺乳动物Spry亚型在成纤维细胞生长因子受体(FGFR)信号传导背景下抑制Ras/ERK途径的能力。Spry2的抑制作用比Spry1或Spry4强得多,这与通过仅在Spry2上发现的C末端富含脯氨酸序列与Grb2结合有关。这个PXXPXR基序直接与Grb2的N末端Src同源结构域3结合,当添加到Spry4的C末端时,产生的嵌合体抑制Ras/ERK途径。抑制PC-12细胞中神经突生长的能力与Spry亚型和工程构建体抑制ERK1/2磷酸化的倾向相关。PXXPXR基序在未受刺激的细胞中是隐蔽的,据推测,Spry2在FGFR刺激后会发生构象变化,从而使其能够随后与Grb2相互作用。我们提供的证据表明,Spry2可以与Ras鸟嘌呤核苷酸交换因子(RasGEF)SOS1竞争与Grb2的结合,从而抑制ERK1/2的磷酸化。