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一项关于PI3K蛋白质-蛋白质相互作用的跨物种研究揭示了P85和SHP2的直接相互作用。

A Cross-Species Study of PI3K Protein-Protein Interactions Reveals the Direct Interaction of P85 and SHP2.

作者信息

Breitkopf Susanne B, Yang Xuemei, Begley Michael J, Kulkarni Meghana, Chiu Yu-Hsin, Turke Alexa B, Lauriol Jessica, Yuan Min, Qi Jie, Engelman Jeffrey A, Hong Pengyu, Kontaridis Maria I, Cantley Lewis C, Perrimon Norbert, Asara John M

机构信息

Beth Israel Deaconess Medical Center, Division of Signal Transduction, Boston, MA USA.

Harvard Medical School, Department of Medicine, Boston, MA USA.

出版信息

Sci Rep. 2016 Feb 3;6:20471. doi: 10.1038/srep20471.

Abstract

Using a series of immunoprecipitation (IP)-tandem mass spectrometry (LC-MS/MS) experiments and reciprocal BLAST, we conducted a fly-human cross-species comparison of the phosphoinositide-3-kinase (PI3K) interactome in a drosophila S2R+ cell line and several NSCLC and human multiple myeloma cell lines to identify conserved interacting proteins to PI3K, a critical signaling regulator of the AKT pathway. Using H929 human cancer cells and drosophila S2R+ cells, our data revealed an unexpected direct binding of Corkscrew, the drosophila ortholog of the non-receptor protein tyrosine phosphatase type II (SHP2) to the Pi3k21B (p60) regulatory subunit of PI3K (p50/p85 human ortholog) but no association with Pi3k92e, the human ortholog of the p110 catalytic subunit. The p85-SHP2 association was validated in human cell lines, and formed a ternary regulatory complex with GRB2-associated-binding protein 2 (GAB2). Validation experiments with knockdown of GAB2 and Far-Western blots proved the direct interaction of SHP2 with p85, independent of adaptor proteins and transfected FLAG-p85 provided evidence that SHP2 binding on p85 occurred on the SH2 domains. A disruption of the SHP2-p85 complex took place after insulin/IGF1 stimulation or imatinib treatment, suggesting that the direct SHP2-p85 interaction was both independent of AKT activation and positively regulates the ERK signaling pathway.

摘要

通过一系列免疫沉淀(IP)-串联质谱(LC-MS/MS)实验以及相互比对的BLAST,我们在果蝇S2R+细胞系、多种非小细胞肺癌(NSCLC)和人多发性骨髓瘤细胞系中,对磷酸肌醇-3-激酶(PI3K)相互作用组进行了果蝇-人类跨物种比较,以鉴定与PI3K保守相互作用的蛋白质,PI3K是AKT信号通路的关键信号调节因子。利用H929人癌细胞和果蝇S2R+细胞,我们的数据揭示了果蝇II型非受体蛋白酪氨酸磷酸酶(SHP2)的直系同源物Corkscrew与PI3K的Pi3k21B(p60)调节亚基(人p50/p85直系同源物)意外的直接结合,但与p110催化亚基的人直系同源物Pi3k92e无关联。p85-SHP2的结合在人细胞系中得到验证,并与GRB2相关结合蛋白2(GAB2)形成三元调节复合物。用GAB2敲低进行的验证实验和Far-Western印迹证明了SHP2与p85的直接相互作用,不依赖衔接蛋白,转染的FLAG-p85提供了SHP2在p85上的结合发生在SH2结构域的证据。胰岛素/IGF1刺激或伊马替尼处理后,SHP2-p85复合物发生破坏,表明直接的SHP2-p85相互作用既不依赖于AKT激活,又正向调节ERK信号通路。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/cbc3/4738311/894da9f6ebe8/srep20471-f1.jpg

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