Ding Ming, Bruick Richard K, Yu Yonghao
Department of Biochemistry, University of Texas Southwestern Medical Center, 5323 Harry Hines Boulevard, Dallas, Texas 75235, USA.
Nat Cell Biol. 2016 Mar;18(3):319-27. doi: 10.1038/ncb3311. Epub 2016 Feb 8.
The PI(3)K-Akt-mTORC1 pathway is a highly dynamic network that is balanced and stabilized by a number of feedback inhibition loops. Specifically, activation of mTORC1 has been shown to lead to the inhibition of its upstream growth factor signalling. Activation of the growth factor receptors is triggered by the binding of their cognate ligands in the extracellular space. However, whether secreted proteins contribute to the mTORC1-dependent feedback loops remains unclear. We found that cells with hyperactive mTORC1 secrete a protein that potently inhibits the function of IGF-1. Using a large-scale, unbiased quantitative proteomic platform, we comprehensively characterized the rapamycin-sensitive secretome in TSC2(-/-) mouse embryonic fibroblasts, and identified IGFBP5 as a secreted, mTORC1 downstream effector protein. IGFBP5 is a direct transcriptional target of HIF1, which itself is a known mTORC1 target. IGFBP5 is a potent inhibitor of both the signalling and functional outputs of IGF-1. Once secreted, IGFBP5 cooperates with intracellular branches of the feedback mechanisms to block the activation of IGF-1 signalling. Finally, IGFBP5 is a potential tumour suppressor, and the proliferation of IGFBP5-mutated cancer cells is selectively blocked by IGF-1R inhibitors.
PI(3)K-Akt-mTORC1信号通路是一个高度动态的网络,由多个反馈抑制环进行平衡和稳定。具体而言,mTORC1的激活已被证明会导致其上游生长因子信号传导的抑制。生长因子受体的激活是由其在细胞外空间中同源配体的结合所触发的。然而,分泌蛋白是否参与mTORC1依赖性反馈环仍不清楚。我们发现,mTORC1过度活跃的细胞会分泌一种能有效抑制IGF-1功能的蛋白质。利用大规模、无偏向的定量蛋白质组学平台,我们全面表征了TSC2(-/-)小鼠胚胎成纤维细胞中雷帕霉素敏感的分泌蛋白质组,并确定IGFBP5是一种分泌的、mTORC1下游效应蛋白。IGFBP5是HIF1的直接转录靶点,而HIF1本身就是一个已知的mTORC1靶点。IGFBP5是IGF-1信号传导和功能输出的有效抑制剂。一旦分泌,IGFBP5就会与反馈机制的细胞内分支协同作用,阻断IGF-1信号传导的激活。最后,IGFBP5是一种潜在的肿瘤抑制因子,IGFBP5突变癌细胞的增殖会被IGF-1R抑制剂选择性阻断。