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肽组合文库鉴定出TSC2为一种与死亡相关的蛋白激酶(DAPK)死亡结构域结合蛋白,并揭示了DAPK在mTORC1信号传导中的刺激作用。

Peptide combinatorial libraries identify TSC2 as a death-associated protein kinase (DAPK) death domain-binding protein and reveal a stimulatory role for DAPK in mTORC1 signaling.

作者信息

Stevens Craig, Lin Yao, Harrison Ben, Burch Lindsay, Ridgway Rachel A, Sansom Owen, Hupp Ted

机构信息

Institute of Genetics and Molecular Medicine, CRUK p53 Signal Transduction Laboratories, University of Edinburgh, Edinburgh EH4 2XR, United Kingdom and the CRUK Beatson Institute for Cancer Research, Glasgow G61 1BD, United Kingdom.

Institute of Genetics and Molecular Medicine, CRUK p53 Signal Transduction Laboratories, University of Edinburgh, Edinburgh EH4 2XR, United Kingdom and the CRUK Beatson Institute for Cancer Research, Glasgow G61 1BD, United Kingdom.

出版信息

J Biol Chem. 2009 Jan 2;284(1):334-344. doi: 10.1074/jbc.M805165200. Epub 2008 Oct 30.

Abstract

Death-associated protein kinase (DAPK) is a multidomain enzyme that plays a central role in autophagic and apoptotic signaling, although the protein-protein interactions regulating DAPK functions are not well defined. Peptide aptamer libraries were used to identify the tumor suppressor protein tuberin (TSC2) as a novel DAPK death domain-binding protein, and we evaluated whether DAPK is a positive or negative effector of the TSC2-regulated mammalian target of rapamycin (mTORC1) signaling pathway. Binding studies using death domain miniproteins in vitro and deletion analysis in vivo determined that the death domain of DAPK is the major site for the interaction with TSC2. Recombinant DAPK phosphorylates TSC2 in vitro, and DAPK kinase activity is stimulated by growth factor signaling. Transfection of DAPK promotes phosphorylation of TSC2 in vivo, whereas short interfering RNA-mediated attenuation of DAPK reduces growth factor-stimulated phosphorylation of TSC2. DAPK-dependent phosphorylation leads to TSC1-TSC2 complex dissociation, and consequently manipulation of DAPK by transfection or short interfering RNA demonstrated that DAPK is a positive regulator of mTORC1 in response to growth factor activation. Epistatic studies suggest that DAPK functions downstream from the RAS-MEK-ERK and phosphatidylinositol 3-kinase-AKT growth factor signaling pathways. DAPK(+/-) mouse embryo fibroblasts have attenuated mTORC1 signaling compared with DAPK+/+ counterparts, and overexpression of DAPK in DAPK(+/-) MEFs stimulates mTORC1 activity. These data uncover a novel interaction between DAPK and TSC2 proteins that has revealed a positive link between growth factor stimulation of DAPK and mTORC1 signaling that may ultimately affect autophagy, cell survival, or apoptosis.

摘要

死亡相关蛋白激酶(DAPK)是一种多结构域酶,在自噬和凋亡信号传导中起核心作用,尽管调节DAPK功能的蛋白质-蛋白质相互作用尚未完全明确。肽适配体文库被用于鉴定肿瘤抑制蛋白结节性硬化蛋白2(TSC2)作为一种新型的DAPK死亡结构域结合蛋白,并且我们评估了DAPK是TSC2调节的哺乳动物雷帕霉素靶蛋白(mTORC1)信号通路的正效应器还是负效应器。利用死亡结构域微小蛋白进行的体外结合研究以及体内缺失分析确定,DAPK的死亡结构域是与TSC2相互作用的主要位点。重组DAPK在体外使TSC2磷酸化,并且DAPK激酶活性受到生长因子信号传导的刺激。DAPK的转染在体内促进TSC2的磷酸化,而短干扰RNA介导的DAPK衰减降低了生长因子刺激的TSC2磷酸化。DAPK依赖性磷酸化导致TSC1-TSC2复合物解离,因此通过转染或短干扰RNA对DAPK进行操作表明,DAPK是响应生长因子激活的mTORC1的正调节因子。上位性研究表明,DAPK在RAS-MEK-ERK和磷脂酰肌醇3激酶-AKT生长因子信号通路的下游发挥作用。与DAPK+/+的小鼠胚胎成纤维细胞相比,DAPK(+/-)小鼠胚胎成纤维细胞的mTORC1信号传导减弱,并且在DAPK(+/-) 小鼠胚胎成纤维细胞中过表达DAPK会刺激mTORC1活性。这些数据揭示了DAPK与TSC2蛋白之间的一种新型相互作用,该相互作用揭示了生长因子对DAPK的刺激与mTORC1信号传导之间的正相关联系,这可能最终影响自噬、细胞存活或凋亡。

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