基诺美
达沙替尼
化学
尼罗替尼
伊布替尼
激酶
小分子
蛋白质组学
甲磺酸伊马替尼
计算生物学
酪氨酸激酶
舒尼替尼
伊马替尼
生物化学
生物
癌症研究
白血病
信号转导
慢性淋巴细胞白血病
髓系白血病
癌症
基因
遗传学
作者
Guillaume Médard,Fiona Pachl,Benjamin Ruprecht,Susan Klaeger,Stephanie Heinzlmeir,Barbara Helm,Huichao Qiao,Xin Ku,Mathias Wilhelm,Thomas Kuehne,Zhixiang Wu,Antje Dittmann,Carsten Hopf,Karl Kramer,Bernhard Küster
摘要
Solid supported probes have proven to be an efficient tool for chemical proteomics. The kinobeads technology features kinase inhibitors covalently attached to Sepharose for affinity enrichment of kinomes from cell or tissue lysates. This technology, combined with quantitative mass spectrometry, is of particular interest for the profiling of kinase inhibitors. It often leads to the identification of new targets for medicinal chemistry campaigns where it allows a two-in-one binding and selectivity assay. The assay can also uncover resistance mechanisms and molecular sources of toxicity. Here we report on the optimization of the kinobead assay resulting in the combination of five chemical probes and four cell lines to cover half the human kinome in a single assay (∼ 260 kinases). We show the utility and large-scale applicability of the new version of kinobeads by reprofiling the small molecule kinase inhibitors Alvocidib, Crizotinib, Dasatinib, Fasudil, Hydroxyfasudil, Nilotinib, Ibrutinib, Imatinib, and Sunitinib.
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