Bousquet Corinne, Guillermet-Guibert Julie, Saint-Laurent Nathalie, Archer-Lahlou Elodie, Lopez Frédéric, Fanjul Marjorie, Ferrand Audrey, Fourmy Daniel, Pichereaux Carole, Monsarrat Bernard, Pradayrol Lucien, Estève Jean-Pierre, Susini Christiane
INSERM U531, Institut Louis Bugnard, CHU Rangueil, Toulouse cedex 4, France.
EMBO J. 2006 Sep 6;25(17):3943-54. doi: 10.1038/sj.emboj.7601279. Epub 2006 Aug 17.
Phosphatidylinositol 3-kinase (PI3K) regulates many cellular functions including growth and survival, and its excessive activation is a hallmark of cancer. Somatostatin, acting through its G protein-coupled receptor (GPCR) sst2, has potent proapoptotic and anti-invasive activities on normal and cancer cells. Here, we report a novel mechanism for inhibiting PI3K activity. Somatostatin, acting through sst2, inhibits PI3K activity by disrupting a pre-existing complex comprising the sst2 receptor and the p85 PI3K regulatory subunit. Surface plasmon resonance and molecular modeling identified the phosphorylated-Y71 residue of a p85-binding pYXXM motif in the first sst2 intracellular loop, and p85 COOH-terminal SH2 as direct interacting domains. Somatostatin-mediated dissociation of this complex as well as p85 tyrosine dephosphorylation correlates with sst2 tyrosine dephosphorylation on the Y71 residue. Mutating sst2-Y71 disabled sst2 to interact with p85 and somatostatin to inhibit PI3K, consequently abrogating sst2's ability to suppress cell survival and tumor growth. These results provide the first demonstration of a physical interaction between a GPCR and p85, revealing a novel mechanism for negative regulation by ligand-activated GPCR of PI3K-dependent survival pathways, which may be an important molecular target for antineoplastic therapy.
磷脂酰肌醇3激酶(PI3K)调节包括生长和存活在内的多种细胞功能,其过度激活是癌症的一个标志。生长抑素通过其G蛋白偶联受体(GPCR)sst2发挥作用,对正常细胞和癌细胞具有强大的促凋亡和抗侵袭活性。在此,我们报告一种抑制PI3K活性的新机制。生长抑素通过sst2发挥作用,通过破坏由sst2受体和p85 PI3K调节亚基组成的预先存在的复合物来抑制PI3K活性。表面等离子体共振和分子建模确定了sst2细胞内环中p85结合基序pYXXM的磷酸化Y71残基以及p85羧基末端SH2作为直接相互作用结构域。生长抑素介导的该复合物解离以及p85酪氨酸去磷酸化与sst2 Y71残基上的酪氨酸去磷酸化相关。将sst2-Y71突变使sst2无法与p85相互作用,生长抑素也无法抑制PI3K,从而消除了sst2抑制细胞存活和肿瘤生长的能力。这些结果首次证明了GPCR与p85之间的物理相互作用,揭示了配体激活的GPCR对PI3K依赖性存活途径进行负调控的新机制,这可能是抗肿瘤治疗的一个重要分子靶点。