Department of Biochemistry, University of Saskatchewan, Saskatoon, SK S7N 5E5, Canada.
Proc Natl Acad Sci U S A. 2010 Mar 23;107(12):5471-6. doi: 10.1073/pnas.0908899107. Epub 2010 Mar 8.
The phosphatidylinositol 3-kinase (PI3K) signaling pathway is deregulated in many human diseases including cancer, diabetes, obesity, and autoimmunity. PI3K consists of a p110 catalytic protein and a p85alpha regulatory protein, required for the stabilization and localization of p110-PI3K activity. The p110-PI3K enzyme generates the key signaling lipid phosphatidylinositol 3,4,5-trisphosphate, which is dephosphorylated by the PI3-phosphatase PTEN. Here we show another function for the p85alpha regulatory protein: it binds directly to and enhances PTEN lipid phosphatase activity. We demonstrate that ectopically expressed FLAG-tagged p85 coimmunoprecipitates endogenous PTEN in an epidermal growth factor dependent manner. We also show epidermal growth factor dependent coimmunoprecipitation of endogenous p85 and PTEN proteins in HeLa cells. Thus p85 regulates both p110-PI3K and PTEN-phosphatase enzymes through direct interaction. This finding underscores the need for caution in analyzing PI3K activity because anti-p85 immunoprecipitations may contain both p85:p110-PI3K and p85:PTEN-phosphatase enzymes and thus measure net PI3K activity. We identify the N-terminal SH3-BH region of p85alpha, absent in the smaller p55alpha and p50alpha isoforms, as the region that mediates PTEN binding and regulation. Cellular expression of p85DeltaSH3-BH results in substantially increased magnitude and duration of pAkt levels in response to growth factor stimulation. The ability of p85 to bind and directly regulate both p110-PI3K and PTEN-PI3-phosphatase allows us to explain the paradoxical insulin signaling phenotypes observed in mice with reduced PI3K or PTEN proteins. This discovery will impact ongoing studies using therapeutics targeting the PI3K/PTEN/Akt pathway.
磷脂酰肌醇 3-激酶(PI3K)信号通路在许多人类疾病中失调,包括癌症、糖尿病、肥胖症和自身免疫性疾病。PI3K 由 p110 催化蛋白和 p85alpha 调节蛋白组成,这两种蛋白对于 p110-PI3K 活性的稳定和定位都是必需的。p110-PI3K 酶生成关键信号脂质磷脂酰肌醇 3,4,5-三磷酸,该脂质被 PI3 磷酸酶 PTEN 去磷酸化。在这里,我们展示了 p85alpha 调节蛋白的另一个功能:它直接结合并增强 PTEN 脂质磷酸酶的活性。我们证明,在外源性表达的 FLAG 标记的 p85 以表皮生长因子依赖的方式与内源性 PTEN 共免疫沉淀。我们还展示了 HeLa 细胞中表皮生长因子依赖性的内源性 p85 和 PTEN 蛋白的共免疫沉淀。因此,p85 通过直接相互作用调节 p110-PI3K 和 PTEN 磷酸酶酶。这一发现强调了在分析 PI3K 活性时需要谨慎,因为抗 p85 免疫沉淀可能同时包含 p85:p110-PI3K 和 p85:PTEN 磷酸酶酶,因此可以测量净 PI3K 活性。我们确定了 p85alpha 的 N 端 SH3-BH 区域,它缺失于较小的 p55alpha 和 p50alpha 同工型中,作为介导 PTEN 结合和调节的区域。细胞中表达的 p85DeltaSH3-BH 导致生长因子刺激后 pAkt 水平的幅度和持续时间显著增加。p85 结合并直接调节 p110-PI3K 和 PTEN-PI3 磷酸酶的能力使我们能够解释在 PI3K 或 PTEN 蛋白减少的小鼠中观察到的矛盾的胰岛素信号表型。这一发现将影响使用针对 PI3K/PTEN/Akt 途径的治疗药物进行的正在进行的研究。