【2h】

Charting the molecular network of the drug target Bcr-Abl

机译:绘制药物靶标Bcr-Abl的分子网络图

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摘要

The tyrosine kinase Bcr-Abl causes chronic myeloid leukemia and is the cognate target of tyrosine kinase inhibitors like imatinib. We have charted the protein–protein interaction network of Bcr-Abl by a 2-pronged approach. Using a monoclonal antibody we have first purified endogenous Bcr-Abl protein complexes from the CML K562 cell line and characterized the set of most tightly-associated interactors by MS. Nine interactors were subsequently subjected to tandem affinity purifications/MS analysis to obtain a molecular interaction network of some hundred cellular proteins. The resulting network revealed a high degree of interconnection of 7 “core” components around Bcr-Abl (Grb2, Shc1, Crk-I, c-Cbl, p85, Sts-1, and SHIP-2), and their links to different signaling pathways. Quantitative proteomics analysis showed that tyrosine kinase inhibitors lead to a disruption of this network. Certain components still appear to interact with Bcr-Abl in a phosphotyrosine-independent manner. We propose that Bcr-Abl and other drug targets, rather than being considered as single polypeptides, can be considered as complex protein assemblies that remodel upon drug action.
机译:酪氨酸激酶Bcr-Abl引起慢性粒细胞白血病,是酪氨酸激酶抑制剂(如伊马替尼)的同源靶标。我们通过两管齐下的图表绘制了Bcr-Abl的蛋白质-蛋白质相互作用网络。使用单克隆抗体,我们首先从CML K562细胞系中纯化了内源性Bcr-Abl蛋白复合物,并通过MS对一组最紧密相关的相互作用子进行了表征。随后对九种相互作用物进行串联亲和纯化/ MS分析,以获得数百种细胞蛋白的分子相互作用网络。最终的网络揭示了Bcr-Abl周围7个“核心”组件(Grb2,Shc1,Crk-1,c-Cbl,p85,Sts-1和SHIP-2)的高度互连,以及它们与不同信令的链接途径。定量蛋白质组学分析表明,酪氨酸激酶抑制剂导致该网络的破坏。某些组分似乎仍以不依赖磷酸酪氨酸的方式与Bcr-Abl相互作用。我们建议,Bcr-Abl和其他药物靶标,而不是被认为是单个多肽,可以被认为是在药物作用后重塑的复杂蛋白质组装体。

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