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使用稳定同位素标记氨基酸法(SILAC)绘制整合素连接激酶相互作用组图谱。

Mapping the integrin-linked kinase interactome using SILAC.

作者信息

Dobreva Iveta, Fielding Andrew, Foster Leonard J, Dedhar Shoukat

机构信息

Department of Cancer Genetics, British Columbia Cancer Research Centre, 675 West 10th Avenue, V5Z 1L3, Vancouver, BC, Canada.

出版信息

J Proteome Res. 2008 Apr;7(4):1740-9. doi: 10.1021/pr700852r. Epub 2008 Mar 10.

Abstract

Protein-protein interactions play an essential role in the regulation of vital biological functions. Through a network of interactions, integrin-linked kinase (ILK) functions downstream of integrin receptors to control cell spreading, migration, growth, survival, and cell cycle progression. Despite many reports on the role of ILK in the regulation of multiple signaling pathways, it is still not understood how ILK integrates and controls complex cellular signals. A more global analysis of ILK-protein complexes will give important insights in the complexity of ILK-dependent signal transduction. Here, we applied a SILAC (stable isotope labeling with amino acids in cell culture)-based proteomics approach to discover novel ILK-interacting proteins. Of 752 proteins identified in ILK immunoprecipitates, 24 proteins had SILAC ratios higher than PINCH, previously identified as direct ILK-binding partner. Some of the newly identified proteins specifically enriched in ILK immunoprecipitates, with potentially interesting roles in ILK biology, include rapamycin-insensitive companion of mTOR (Rictor), alpha- and beta-tubulin, RuvB-like 1 and 2, HS1-associating protein 1 (HAX-1), T-complex protein 1 subunits, and Ras-GTP-ase activating-like protein 1 (IQ-GAP1). Functional interactions between ILK and several of the new binding partners were confirmed by coimmunoprecipitation/Western blot and colocalization experiments. Detailed analysis showed that when ILK is found in a complex with alpha-tubulin and RuvB-like 1, alpha-parvin and PINCH are not present, suggesting that ILK has the ability to form distinct protein complexes throughout the cell. Inhibition of ILK activity with an ILK-kinase inhibitor QLT0267 or downregulation of its expression impaired the ability of RuvB-like 1 to bind to tubulin pointing toward a possible role of ILK in the regulation of RuvB-like 1/tubulin interaction. Using the power of quantitative proteomics to resolve specific from nonspecific protein interactions, we identified several novel ILK-binding proteins, which sheds light on the molecular mechanisms of regulation of ILK-dependent signal transduction.

摘要

蛋白质-蛋白质相互作用在重要生物学功能的调节中起着至关重要的作用。通过相互作用网络,整合素连接激酶(ILK)在整合素受体下游发挥作用,以控制细胞铺展、迁移、生长、存活和细胞周期进程。尽管有许多关于ILK在多种信号通路调节中作用的报道,但仍不清楚ILK如何整合和控制复杂的细胞信号。对ILK-蛋白质复合物进行更全面的分析将为ILK依赖性信号转导的复杂性提供重要见解。在这里,我们应用基于细胞培养中氨基酸稳定同位素标记(SILAC)的蛋白质组学方法来发现新的与ILK相互作用的蛋白质。在ILK免疫沉淀中鉴定出的752种蛋白质中,有24种蛋白质的SILAC比率高于PINCH,PINCH先前被确定为直接与ILK结合的伙伴。一些新鉴定的蛋白质在ILK免疫沉淀中特异性富集,在ILK生物学中可能具有有趣的作用,包括雷帕霉素不敏感的mTOR伴侣(Rictor)、α和β微管蛋白、RuvB样蛋白1和2、HS1相关蛋白1(HAX-1)、T复合体蛋白1亚基以及Ras-GTP酶激活样蛋白1(IQ-GAP1)。通过免疫共沉淀/蛋白质印迹和共定位实验证实了ILK与几个新结合伙伴之间的功能相互作用。详细分析表明,当ILK与α微管蛋白和RuvB样蛋白1形成复合物时,α-帕文和PINCH不存在,这表明ILK有能力在整个细胞中形成不同的蛋白质复合物。用ILK激酶抑制剂QLT0267抑制ILK活性或下调其表达会损害RuvB样蛋白1与微管蛋白结合的能力,这表明ILK在调节RuvB样蛋白1/微管蛋白相互作用中可能发挥作用。利用定量蛋白质组学的力量来区分特异性和非特异性蛋白质相互作用,我们鉴定出了几种新的与ILK结合的蛋白质,这为ILK依赖性信号转导的调节分子机制提供了线索。

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